Crystallography Open Database

Result: there are 19021 entries in the selection

Switch to the old layout of the page

Download all results as: list of COD numbers | list of CIF URLs | data in CSV format

We are unable to provide that many records as a single archive.
You can instead download the entire COD archive as a single .zip, .tgz or .txz archive.

Searching year of publication is 2008

Blue left arrow Blue left arrow First | Blue left arrow Previous 500 | of 39 | Next 500 Blue right arrow | Last Blue right arrow Blue right arrow | Display 5 20 50 100 200 300 500 1000 entries per page

COD ID Blue up arrow Links Formula Up arrow Space group Up arrow Cell parameters Cell volume Up arrow Bibliography
9010370 CIFBa2.21 Ca0.31 Fe0.23 H48 K0.53 Mg0.935 Mn0.23 Nb9.22 O54 Ta0.36 Th0.55 Ti3.25 Zr2.74I m -313.017; 13.017; 13.017
90; 90; 90
2205.63Atencio, D.; Coutinho, J. M. V.; Doriguetto, A. C.; Mascarenhas, Y. P.; Ellena, J.; Ferrari, V. C.
Menezesite, the first natural heteropolyniobate, from Cajati, Sao Paulo, Brazil: description and crystal structure Locality: Jacupiranga mine, Cajati county, Sao Paulo, Brazil
American Mineralogist, 2008, 93, 81-87
9010371 CIFC3.44 O46 Si23P m -3 n13.399; 13.399; 13.399
90; 90; 90
2405.56Tribaudino, M.; Artoni, A.; Mavris, C.; Bersani, D.; Lottici, P. P.; Belletti, D.
Single-crystal X-ray and Raman investigation on melanophlogite from Varano Marchesi (Parma, Italy)
American Mineralogist, 2008, 93, 88-94
9010372 CIFAl7.657 Ca1.12 H46 K3 Mg0.72 Na0.47 O78.37 Si22.343P m m n :27.57887; 18.20098; 26.15387
90; 90; 90
3607.74Galli, E.; Gualtieri, A. F.
Direnzoite, [NaK6MgCa2(Al13Si47O120)*36H2O], a new zeolite from Massif Central (France): Description and crystal structure Locality: Massif Central, France Note: changed O11(y) sign
American Mineralogist, 2008, 93, 95-102
9010373 CIFAl Na O6 Si2C 1 2/c 19.4242; 8.5657; 5.2242
90; 107.578; 90
402.031McCarthy, A. C.; Downs, R. T.; Thompson, R. M.
Compressibility trends of the clinopyroxenes, and in-situ high-pressure single-crystal X-ray diffraction study of jadeite Sample: Room Conditions, P = 0.0001 GPa
American Mineralogist, 2008, 93, 198-209
9010374 CIFAl Na O6 Si2C 1 2/c 19.3718; 8.524; 5.1985
90; 107.399; 90
396.282McCarthy, A. C.; Downs, R. T.; Thompson, R. M.
Compressibility trends of the clinopyroxenes, and in-situ high-pressure single-crystal X-ray diffraction study of jadeite Sample: P = 2.07 GPa
American Mineralogist, 2008, 93, 198-209
9010375 CIFAl Na O6 Si2C 1 2/c 19.3372; 8.4966; 5.1805
90; 107.285; 90
392.431McCarthy, A. C.; Downs, R. T.; Thompson, R. M.
Compressibility trends of the clinopyroxenes, and in-situ high-pressure single-crystal X-ray diffraction study of jadeite Sample: P = 3.40 GPa
American Mineralogist, 2008, 93, 198-209
9010376 CIFAl Na O6 Si2C 1 2/c 19.303; 8.4666; 5.1609
90; 107.14; 90
388.444McCarthy, A. C.; Downs, R. T.; Thompson, R. M.
Compressibility trends of the clinopyroxenes, and in-situ high-pressure single-crystal X-ray diffraction study of jadeite Sample: P = 4.92 GPa
American Mineralogist, 2008, 93, 198-209
9010377 CIFAl Na O6 Si2C 1 2/c 19.2793; 8.4446; 5.1474
90; 107.054; 90
385.614McCarthy, A. C.; Downs, R. T.; Thompson, R. M.
Compressibility trends of the clinopyroxenes, and in-situ high-pressure single-crystal X-ray diffraction study of jadeite Sample: P = 6.12 GPa
American Mineralogist, 2008, 93, 198-209
9010378 CIFAl Na O6 Si2C 1 2/c 19.2593; 8.4268; 5.1354
90; 106.979; 90
383.231McCarthy, A. C.; Downs, R. T.; Thompson, R. M.
Compressibility trends of the clinopyroxenes, and in-situ high-pressure single-crystal X-ray diffraction study of jadeite Sample: P = 7.17 GPa
American Mineralogist, 2008, 93, 198-209
9010379 CIFAl Na O6 Si2C 1 2/c 19.2455; 8.4137; 5.1269
90; 106.91; 90
381.572McCarthy, A. C.; Downs, R. T.; Thompson, R. M.
Compressibility trends of the clinopyroxenes, and in-situ high-pressure single-crystal X-ray diffraction study of jadeite Sample: P = 7.83 GPa
American Mineralogist, 2008, 93, 198-209
9010380 CIFAl Na O6 Si2C 1 2/c 19.2305; 8.3999; 5.1178
90; 106.854; 90
379.766McCarthy, A. C.; Downs, R. T.; Thompson, R. M.
Compressibility trends of the clinopyroxenes, and in-situ high-pressure single-crystal X-ray diffraction study of jadeite Sample: P = 8.54 GPa
American Mineralogist, 2008, 93, 198-209
9010381 CIFAl Na O6 Si2C 1 2/c 19.2185; 8.3871; 5.1099
90; 106.794; 90
378.229McCarthy, A. C.; Downs, R. T.; Thompson, R. M.
Compressibility trends of the clinopyroxenes, and in-situ high-pressure single-crystal X-ray diffraction study of jadeite Sample: P = 9.17 GPa
American Mineralogist, 2008, 93, 198-209
9010382 CIFCa5 Cl0.4 F0.5 H0.1 O12.1 P3P 63/m9.441; 9.441; 6.835
90; 90; 120
527.6McCubbin, F. M.; Mason, H. E.; Park, H.; Phillips, B. L.; Parise, J. B.; Nekvasil, H.; Lindsley, D. H.
Synthesis and characterization of low-OH- fluor-chlorapatite: a single-crystal XRD and NMR spectroscopic study Locality: synthetic
American Mineralogist, 2008, 93, 210-216
9010384 CIFAl2 D1.456 H0.544 O6 SiP b n m4.7279; 8.9269; 8.4214
90; 90; 90
355.429Komatsu, K.; Kagi, H.; Marshall, W. G.; Kuribayashi, T.; Parise, J. B.; Kudoh, Y.
Pressure dependence of the hydrogen-bond geometry in topaz-OD from neutron powder diffraction Locality: synthetic Sample: P = 0.0001 GPa
American Mineralogist, 2008, 93, 217-227
9010385 CIFAl2 D2 O6 SiP b n m4.7316; 8.9328; 8.4286
90; 90; 90
356.247Komatsu, K.; Kagi, H.; Marshall, W. G.; Kuribayashi, T.; Parise, J. B.; Kudoh, Y.
Pressure dependence of the hydrogen-bond geometry in topaz-OD from neutron powder diffraction Locality: synthetic Sample: 7 tons, P = 0.0001 GPa
American Mineralogist, 2008, 93, 217-227
9010386 CIFAl2 D2 O6 SiP b n m4.7248; 8.925; 8.41
90; 90; 90
354.64Komatsu, K.; Kagi, H.; Marshall, W. G.; Kuribayashi, T.; Parise, J. B.; Kudoh, Y.
Pressure dependence of the hydrogen-bond geometry in topaz-OD from neutron powder diffraction Locality: synthetic Sample: 15 tons, P = 0.7 GPa
American Mineralogist, 2008, 93, 217-227
9010387 CIFAl2 D2 O6 SiP b n m4.7129; 8.9046; 8.3802
90; 90; 90
351.688Komatsu, K.; Kagi, H.; Marshall, W. G.; Kuribayashi, T.; Parise, J. B.; Kudoh, Y.
Pressure dependence of the hydrogen-bond geometry in topaz-OD from neutron powder diffraction Locality: synthetic Sample: 25 tons, P = 1.9 GPa
American Mineralogist, 2008, 93, 217-227
9010388 CIFAl2 D2 O6 SiP b n m4.6978; 8.8786; 8.339
90; 90; 90
347.819Komatsu, K.; Kagi, H.; Marshall, W. G.; Kuribayashi, T.; Parise, J. B.; Kudoh, Y.
Pressure dependence of the hydrogen-bond geometry in topaz-OD from neutron powder diffraction Locality: synthetic Sample: 38 tons, P = 3.6 GPa
American Mineralogist, 2008, 93, 217-227
9010389 CIFAl2 D2 O6 SiP b n m4.6888; 8.8624; 8.3147
90; 90; 90
345.509Komatsu, K.; Kagi, H.; Marshall, W. G.; Kuribayashi, T.; Parise, J. B.; Kudoh, Y.
Pressure dependence of the hydrogen-bond geometry in topaz-OD from neutron powder diffraction Locality: synthetic Sample: 46 tons, P = 4.7 GPa
American Mineralogist, 2008, 93, 217-227
9010390 CIFAl2 D2 O6 SiP b n m4.6755; 8.841; 8.2823
90; 90; 90
342.358Komatsu, K.; Kagi, H.; Marshall, W. G.; Kuribayashi, T.; Parise, J. B.; Kudoh, Y.
Pressure dependence of the hydrogen-bond geometry in topaz-OD from neutron powder diffraction Locality: synthetic Sample: 58 tons, P = 6.2 GPa
American Mineralogist, 2008, 93, 217-227
9010391 CIFAl2 D2 O6 SiP b n m4.6658; 8.821; 8.2573
90; 90; 90
339.846Komatsu, K.; Kagi, H.; Marshall, W. G.; Kuribayashi, T.; Parise, J. B.; Kudoh, Y.
Pressure dependence of the hydrogen-bond geometry in topaz-OD from neutron powder diffraction Locality: synthetic Sample: 70 tons, P = 7.5 GPa
American Mineralogist, 2008, 93, 217-227
9010392 CIFAl16 B6.04 O37 Si1.96C 1 2/m 114.797; 5.58; 15.095
90; 91.75; 90
1245.77Grew, E. S.; Graetsch, H. A.; Poter, B.; Yates, M. G.; Buick, I.; Bernhardt, H.-J.; Schreyer, W.; Werding, G.; Carson, C. J.; Clarke, G. L.
Boralsilite, Al16B6Si2O37, and "boron-mullite:" compositional variations and associated phases in experiment and nature Sample: run W2
American Mineralogist, 2008, 93, 283-299
9010393 CIFFe0.489 H1.521 K Mg2.511 O12 Si3.961C 1 2/m 15.3252; 9.2205; 10.2458
90; 99.9938; 90
495.446Matarrese, S.; Schingaro, E.; Scordari, F.; Stoppa, F.; Rosatelli, G.; Pedrazzi, G.; Ottolini, L.
Crystal chemistry of phlogopite from Vulture-S. Michele Subsynthem volcanic rocks (Mt. Vulture, Italy) and volcanological implications Locality: Masseria Saraceno pyroclastic flow, Vulture-San Michele Subsynthem, Mt. Vulture, Italy Sample: VUT191_1
American Mineralogist, 2008, 93, 426-437
9010394 CIFFe0.53 H1.802 K Mg2.47 O12 Si3.985C 1 2/m 15.3254; 9.2216; 10.2411
90; 100.022; 90
495.253Matarrese, S.; Schingaro, E.; Scordari, F.; Stoppa, F.; Rosatelli, G.; Pedrazzi, G.; Ottolini, L.
Crystal chemistry of phlogopite from Vulture-S. Michele Subsynthem volcanic rocks (Mt. Vulture, Italy) and volcanological implications Locality: Masseria Saraceno pyroclastic flow, Vulture-San Michele Subsynthem, Mt. Vulture, Italy Sample: VUT191_2
American Mineralogist, 2008, 93, 426-437
9010395 CIFFe1.054 H1.573 K Mg1.944 O12 Si3.97C 1 2/m 15.338; 9.243; 10.1923
90; 100.022; 90
495.205Matarrese, S.; Schingaro, E.; Scordari, F.; Stoppa, F.; Rosatelli, G.; Pedrazzi, G.; Ottolini, L.
Crystal chemistry of phlogopite from Vulture-S. Michele Subsynthem volcanic rocks (Mt. Vulture, Italy) and volcanological implications Locality: Masseria Saraceno pyroclastic flow, Vulture-San Michele Subsynthem, Mt. Vulture, Italy Sample: VUT191_10
American Mineralogist, 2008, 93, 426-437
9010396 CIFFe1.019 H1.329 K Mg1.981 O12 Si3.973C 1 2/m 15.3367; 9.2431; 10.1806
90; 100.103; 90
494.398Matarrese, S.; Schingaro, E.; Scordari, F.; Stoppa, F.; Rosatelli, G.; Pedrazzi, G.; Ottolini, L.
Crystal chemistry of phlogopite from Vulture-S. Michele Subsynthem volcanic rocks (Mt. Vulture, Italy) and volcanological implications Locality: Masseria Saraceno pyroclastic flow, Vulture-San Michele Subsynthem, Mt. Vulture, Italy Sample: VUT191_11
American Mineralogist, 2008, 93, 426-437
9010397 CIFFe1.012 H1.365 K Mg1.987 O12 Si3.972C 1 2/m 15.3377; 9.2424; 10.1654
90; 100.099; 90
493.721Matarrese, S.; Schingaro, E.; Scordari, F.; Stoppa, F.; Rosatelli, G.; Pedrazzi, G.; Ottolini, L.
Crystal chemistry of phlogopite from Vulture-S. Michele Subsynthem volcanic rocks (Mt. Vulture, Italy) and volcanological implications Locality: Masseria Saraceno pyroclastic flow, Vulture-San Michele Subsynthem, Mt. Vulture, Italy Sample: VUT191_13
American Mineralogist, 2008, 93, 426-437
9010398 CIFFe0.993 H1.442 K Mg2.007 O12 Si3.96C 1 2/m 15.3341; 9.2387; 10.1569
90; 100.057; 90
492.843Matarrese, S.; Schingaro, E.; Scordari, F.; Stoppa, F.; Rosatelli, G.; Pedrazzi, G.; Ottolini, L.
Crystal chemistry of phlogopite from Vulture-S. Michele Subsynthem volcanic rocks (Mt. Vulture, Italy) and volcanological implications Locality: Masseria Saraceno pyroclastic flow, Vulture-San Michele Subsynthem, Mt. Vulture, Italy Sample: VUT191_19
American Mineralogist, 2008, 93, 426-437
9010399 CIFCa3 H2 O9 Si2 Zr0.5P n n m5.666; 18.844; 3.728
90; 90; 90
398.039Kadiyski, M.; Armbruster, T.; Galuskin, E. V.; Pertsev, N. N.; Zadov, A. E.; Galuskina, I. O.; Wrzalik, R.; Dzierzanowski, P.; Kislov, E. V.
The modular structure of dovyrenite, Ca6Zr[Si2O7]2(OH)4: alternate stacking of tobermorite and rosenbuschite-like units Locality: skarndolomite xenoliths, Dovyren massif, Russia
American Mineralogist, 2008, 93, 456-462
9010400 CIFAs2 Cu1.87 H12 Mg3.13 O16P 1 21/c 15.459; 16.808; 6.917
90; 100.44; 90
624.162Kyono, A.
Compositional variability and crystal structural features of guanacoite
American Mineralogist, 2008, 93, 501-507
9010401 CIFMg O3 SiP 1 21/m 19.477; 6.205; 4.256
90; 98.75; 90
247.36Tschauner, O.; Kiefer, B.; Liu, H.; Sinogeikin, S.; Somayazulu, M.; Luo, S.-N.
Possible structural polymorphism in Al-bearing magnesiumsilicate post-perovskite Sample: 3X1
American Mineralogist, 2008, 93, 533-539
9010402 CIFMg O3 SiP 1 21/m 17.026; 6.228; 4.262
90; 95.85; 90
185.525Tschauner, O.; Kiefer, B.; Liu, H.; Sinogeikin, S.; Somayazulu, M.; Luo, S.-N.
Possible structural polymorphism in Al-bearing magnesiumsilicate post-perovskite Sample: 2X1 Note: atom sites modified after communication with author
American Mineralogist, 2008, 93, 533-539
9010403 CIFFe2 O9 Pb2 Si2P b c n6.9788; 11.0164; 10.0881
90; 90; 90
775.586Dorsam, G.; Liebscher, A.; Wunder, B.; Franz, G.
Crystal structures of synthetic melanotekite (Pb2Fe2Si2O9), kentrolite (Pb2Mn2Si2O9), and the aluminum analogue (Pb2Al2Si2O9)
American Mineralogist, 2008, 93, 573-583
9010404 CIFMn2 O9 Pb2 Si2P 21 2 217.0079; 11.0665; 9.9634
90; 90; 90
772.691Dorsam, G.; Liebscher, A.; Wunder, B.; Franz, G.
Crystal structures of synthetic melanotekite (Pb2Fe2Si2O9), kentrolite (Pb2Mn2Si2O9), and the aluminum analogue (Pb2Al2Si2O9)
American Mineralogist, 2008, 93, 573-583
9010405 CIFAl2 O9 Pb2 Si2P b c n6.8981; 10.6906; 9.7413
90; 90; 90
718.37Dorsam, G.; Liebscher, A.; Wunder, B.; Franz, G.
Crystal structures of synthetic melanotekite (Pb2Fe2Si2O9), kentrolite (Pb2Mn2Si2O9), and the aluminum analogue (Pb2Al2Si2O9)
American Mineralogist, 2008, 93, 573-583
9010406 CIFFe H O2P b n m4.6163; 9.9564; 3.0248
90; 90; 90
139.025Alvarez, M.; Sileo, E. E.; Rueda, E. H.
Structure and reactivity of synthetic Co-substituted goethites Sample: G0, 0 mol% Co Note: changed OH(x) to match reported bond distances
American Mineralogist, 2008, 93, 584-590
9010407 CIFCo0.03 Fe0.97 H O2P b n m4.607; 9.9472; 3.021
90; 90; 90
138.443Alvarez, M.; Sileo, E. E.; Rueda, E. H.
Structure and reactivity of synthetic Co-substituted goethites Sample: G3, 3 mol% Co
American Mineralogist, 2008, 93, 584-590
9010408 CIFCo0.05 Fe0.95 H O2P b n m4.5975; 9.9395; 3.0183
90; 90; 90
137.927Alvarez, M.; Sileo, E. E.; Rueda, E. H.
Structure and reactivity of synthetic Co-substituted goethites Sample: G5, 5 mol% Co Note: changed O(x) to match reported bond distances
American Mineralogist, 2008, 93, 584-590
9010409 CIFCo0.07 Fe0.93 H O2P b n m4.5901; 9.9309; 3.0148
90; 90; 90
137.426Alvarez, M.; Sileo, E. E.; Rueda, E. H.
Structure and reactivity of synthetic Co-substituted goethites Sample: G7, 7 mol% Co
American Mineralogist, 2008, 93, 584-590
9010410 CIFCo0.1 Fe0.9 H O2P b n m4.58; 9.9198; 3.0102
90; 90; 90
136.761Alvarez, M.; Sileo, E. E.; Rueda, E. H.
Structure and reactivity of synthetic Co-substituted goethites Sample: G10, 10 mol% Co
American Mineralogist, 2008, 93, 584-590
9010411 CIFH2 Mg1.864 O4.129 SiI 1 2/m 15.6807; 11.5243; 8.2515
90; 90.09; 90
540.193Holl, C. M.; Smyth, J. R.; Jacobsen, S. D.; Frost, D. J.
Effects of hydration on the structure and compressibility of wadsleyite, beta-(Mg2SiO4) Locality: synthetic Sample: SS0401, 1.66 wt% H2O
American Mineralogist, 2008, 93, 598-607
9010412 CIFH2 Mg1.89 O4.092 SiI m m a5.6862; 11.5023; 8.2526
90; 90.013; 90
539.756Holl, C. M.; Smyth, J. R.; Jacobsen, S. D.; Frost, D. J.
Effects of hydration on the structure and compressibility of wadsleyite, beta-(Mg2SiO4) Locality: synthetic Sample: SS0402, 1.18 wt% H2O
American Mineralogist, 2008, 93, 598-607
9010413 CIFH2 Mg1.961 O4.03 SiI m m a5.6951; 11.4628; 8.2565
90; 90.001; 90
538.999Holl, C. M.; Smyth, J. R.; Jacobsen, S. D.; Frost, D. J.
Effects of hydration on the structure and compressibility of wadsleyite, beta-(Mg2SiO4) Locality: synthetic Sample: SS0403, 0.38 wt% H2O
American Mineralogist, 2008, 93, 598-607
9010414 CIFMg2 O4 SiI m m a5.7008; 11.4407; 8.2582
90; 90; 90
538.609Holl, C. M.; Smyth, J. R.; Jacobsen, S. D.; Frost, D. J.
Effects of hydration on the structure and compressibility of wadsleyite, beta-(Mg2SiO4) Sample: WS3056, 0.005 wt% H2O
American Mineralogist, 2008, 93, 598-607
9010415 CIFAl1.229 Fe0.781 H1.186 K Mg2.219 O12 Si2.704C 1 2/m 15.3278; 9.2225; 10.2087
90; 100.031; 90
493.943Ventruti, G.; Zema, M.; Scordari, F.; Pedrazzi, G.
Thermal behavior of a Ti-rich phlogopite from Mt. Vulture (Potenza, Italy): An in situ X-ray single-crystal diffraction study Sample: T = 100 K
American Mineralogist, 2008, 93, 632-643
9010416 CIFAl1.227 Fe0.799 H1.189 K Mg2.201 O12 Si2.699C 1 2/m 15.331; 9.2298; 10.2217
90; 100.031; 90
495.261Ventruti, G.; Zema, M.; Scordari, F.; Pedrazzi, G.
Thermal behavior of a Ti-rich phlogopite from Mt. Vulture (Potenza, Italy): An in situ X-ray single-crystal diffraction study Sample: T = 200 K
American Mineralogist, 2008, 93, 632-643
9010417 CIFAl1.226 Fe0.797 H1.187 K Mg2.203 O12 Si2.698C 1 2/m 15.3365; 9.2438; 10.2331
90; 100.031; 90
497.078Ventruti, G.; Zema, M.; Scordari, F.; Pedrazzi, G.
Thermal behavior of a Ti-rich phlogopite from Mt. Vulture (Potenza, Italy): An in situ X-ray single-crystal diffraction study Sample: T = 298 K
American Mineralogist, 2008, 93, 632-643
9010418 CIFAl1.224 Fe0.785 K Mg2.215 O12 Si2.693C 1 2/m 15.316; 9.2043; 10.1613
90; 100.06; 90
489.549Ventruti, G.; Zema, M.; Scordari, F.; Pedrazzi, G.
Thermal behavior of a Ti-rich phlogopite from Mt. Vulture (Potenza, Italy): An in situ X-ray single-crystal diffraction study Sample: T = 298 K after reversal experiment
American Mineralogist, 2008, 93, 632-643
9010419 CIFAl1.225 Fe0.784 K Mg2.216 O12 Si2.695C 1 2/m 15.34; 9.247; 10.2465
90; 100.055; 90
498.19Ventruti, G.; Zema, M.; Scordari, F.; Pedrazzi, G.
Thermal behavior of a Ti-rich phlogopite from Mt. Vulture (Potenza, Italy): An in situ X-ray single-crystal diffraction study Sample: T = 473 K
American Mineralogist, 2008, 93, 632-643
9010420 CIFAl1.225 Fe0.784 K Mg2.216 O12 Si2.695C 1 2/m 15.3526; 9.2727; 10.2787
90; 100.069; 90
502.306Ventruti, G.; Zema, M.; Scordari, F.; Pedrazzi, G.
Thermal behavior of a Ti-rich phlogopite from Mt. Vulture (Potenza, Italy): An in situ X-ray single-crystal diffraction study Sample: T = 673 K
American Mineralogist, 2008, 93, 632-643
9010421 CIFAl1.225 Fe0.786 K Mg2.214 O12 Si2.696C 1 2/m 15.3583; 9.2866; 10.296
90; 100.081; 90
504.423Ventruti, G.; Zema, M.; Scordari, F.; Pedrazzi, G.
Thermal behavior of a Ti-rich phlogopite from Mt. Vulture (Potenza, Italy): An in situ X-ray single-crystal diffraction study Sample: T = 873 K
American Mineralogist, 2008, 93, 632-643
9010422 CIFAl1.225 Fe0.785 K Mg2.215 O12 Si2.695C 1 2/m 15.356; 9.2798; 10.2863
90; 100.051; 90
503.41Ventruti, G.; Zema, M.; Scordari, F.; Pedrazzi, G.
Thermal behavior of a Ti-rich phlogopite from Mt. Vulture (Potenza, Italy): An in situ X-ray single-crystal diffraction study Sample: T = 873 K, after 14 h from previous measurement at same temperature
American Mineralogist, 2008, 93, 632-643
9010423 CIFAl1.224 Fe0.786 K Mg2.214 O12 Si2.694C 1 2/m 15.3621; 9.2897; 10.2986
90; 100.064; 90
505.104Ventruti, G.; Zema, M.; Scordari, F.; Pedrazzi, G.
Thermal behavior of a Ti-rich phlogopite from Mt. Vulture (Potenza, Italy): An in situ X-ray single-crystal diffraction study Sample: T = 1023 K
American Mineralogist, 2008, 93, 632-643
9010424 CIFAl0.236 Ca0.01 Fe0.967 Mg0.923 Mn0.016 O6 Si1.848P b c a18.2889; 8.8662; 5.2175
90; 90; 90
846.034Nestola, F.; Ballaran, T. B.; Balic-Zunic T; Secco, L.; Dal Negro, A.
The high-pressure behavior of an Al- and Fe-rich natural orthopyroxene Sample: P = 0 GPa, in air
American Mineralogist, 2008, 93, 644-652
9010425 CIFAl0.236 Ca0.01 Fe0.967 Mg0.923 Mn0.016 O6 Si1.848P b c a18.2889; 8.8662; 5.2175
90; 90; 90
846.034Nestola, F.; Ballaran, T. B.; Balic-Zunic T; Secco, L.; Dal Negro, A.
The high-pressure behavior of an Al- and Fe-rich natural orthopyroxene Sample: P = 0 GPa, in air, same # of reflections as DAC crystal
American Mineralogist, 2008, 93, 644-652
9010426 CIFAl0.236 Ca0.01 Fe0.967 Mg0.923 Mn0.016 O6 Si1.848P b c a18.2804; 8.8601; 5.2161
90; 90; 90
844.832Nestola, F.; Ballaran, T. B.; Balic-Zunic T; Secco, L.; Dal Negro, A.
The high-pressure behavior of an Al- and Fe-rich natural orthopyroxene Sample: P = 0.163 GPa
American Mineralogist, 2008, 93, 644-652
9010427 CIFAl0.236 Ca0.01 Fe0.967 Mg0.923 Mn0.016 O6 Si1.848P b c a18.2192; 8.8111; 5.1965
90; 90; 90
834.2Nestola, F.; Ballaran, T. B.; Balic-Zunic T; Secco, L.; Dal Negro, A.
The high-pressure behavior of an Al- and Fe-rich natural orthopyroxene Sample: P = 1.715 GPa
American Mineralogist, 2008, 93, 644-652
9010428 CIFAl0.236 Ca0.01 Fe0.967 Mg0.923 Mn0.016 O6 Si1.848P b c a18.1427; 8.746; 5.1716
90; 90; 90
820.609Nestola, F.; Ballaran, T. B.; Balic-Zunic T; Secco, L.; Dal Negro, A.
The high-pressure behavior of an Al- and Fe-rich natural orthopyroxene Sample: P = 3.947 GPa
American Mineralogist, 2008, 93, 644-652
9010429 CIFAl0.236 Ca0.01 Fe0.967 Mg0.923 Mn0.016 O6 Si1.848P b c a18.0221; 8.6456; 5.1327
90; 90; 90
799.736Nestola, F.; Ballaran, T. B.; Balic-Zunic T; Secco, L.; Dal Negro, A.
The high-pressure behavior of an Al- and Fe-rich natural orthopyroxene Sample: P = 8.033 GPa
American Mineralogist, 2008, 93, 644-652
9010430 CIFAl0.236 Ca0.01 Fe0.967 Mg0.923 Mn0.016 O6 Si1.848P b c a17.977; 8.61; 5.1227
90; 90; 90
792.902Nestola, F.; Ballaran, T. B.; Balic-Zunic T; Secco, L.; Dal Negro, A.
The high-pressure behavior of an Al- and Fe-rich natural orthopyroxene Sample: P = 9.562 GPa
American Mineralogist, 2008, 93, 644-652
9010431 CIFAl1.1 H9 Mg O14.92 Si3.9C 1 2/m 113.179; 17.852; 5.2316
90; 107.77; 90
1172.12Post, J. E.; Heaney, P. J.
Synchotron powder X-ray diffraction study of the structure and dehydration behavior of palygorskite Sample: T = 100 K
American Mineralogist, 2008, 93, 667-675
9010432 CIFAl2.2 H22 Mg2.14 O30 Si7.8C 1 2/m 113.2858; 17.8476; 5.2419
90; 107.56; 90
1185.04Post, J. E.; Heaney, P. J.
Synchotron powder X-ray diffraction study of the structure and dehydration behavior of palygorskite Sample: T = 300 K
American Mineralogist, 2008, 93, 667-675
9010433 CIFAl Mg O10.4 Si4P 1 21/a 110.755; 15.353; 5.281
90; 96.17; 90
866.956Post, J. E.; Heaney, P. J.
Synchotron powder X-ray diffraction study of the structure and dehydration behavior of palygorskite Sample: T = 1160 K
American Mineralogist, 2008, 93, 667-675
9010434 CIFAl0.058 Cr1.702 Fe0.122 Mg0.042 O3 Ti0.076R -3 c :H4.9696; 4.9696; 13.597
90; 90; 120
290.815Logvinova, A. M.; Wirth, R.; Sobolev, N. V.; Seryotkin, Y. V.; Yefimova, E. S.; Floss, C.; Taylor, L. A.
Eskolaite associated with diamond from the Udachnaya kimberlite pipe, Yakutia, Russia Locality: natural diamond, Udachnaya pipe, Yukutia, Russia
American Mineralogist, 2008, 93, 685-690
9010435 CIFAl0.09 Ca0.87 Fe1.91 H15.72 Na1.13 O29 P4 U1.888C 1 c 119.6441; 7.0958; 18.7029
90; 115.692; 90
2349.27Mills, S. J.; Birch, W. D.; Kolitsch, U.; Mumme, W. G.; Grey, I. E.
Lakebogaite, CaNaFe3+2H(UO2)2(PO4)4(OH)2(H2O)8, a new uranyl phosphate with a unique crystal structure from Victoria, Australia Locality: Upper Devonian granite, near Lake Boga, northern Victoria, Australia
American Mineralogist, 2008, 93, 691-697
9010436 CIFC H0.65 Ce0.5 F0.35 La0.23 Nd0.24 O3.65 Y0.03P -612.4112; 12.4112; 9.8511
90; 90; 120
1314.14Yang, H.; Dembowski, R. F.; Conrad, P. G.; Downs, R. T.
Crystal structure and Raman spectrum of hydroxyl-bastnasite-(Ce), CeCO3(OH) Note: changed Ce3(z) to .2579 according to authors Locality: Trimouns, Luzenac, France
American Mineralogist, 2008, 93, 698-701
9010438 CIFAs4.71 Bi6.97 Cl3 Pb9.6 S27 Sn0.72C 1 2/c 18.371; 45.502; 27.273
90; 98.83; 90
10265.1Pinto, D.; Bonaccorsi, E.; Balic-Zunic T; Makovicky, E.
The crystal structure of vurroite, Pb20Sn2(Bi,As)22S54Cl6: OD-character, polytypism, twinning, and modular description
American Mineralogist, 2008, 93, 713-727
9010439 CIFFe3 H6 K0.76 Na0.24 O14 S2R -3 m :H7.3045; 7.3045; 17.0875
90; 90; 120
789.569Basciano, L. C.; Peterson, R. C.
Crystal chemistry of the natrojarosite-jarosite and natrojarosite-hydronium jarosite solid-solution: A synthetic study with full Fe site occupancy Sample: K
American Mineralogist, 2008, 93, 853-862
9010440 CIFFe3 H6 K0.6 Na0.4 O14 S2R -3 m :H7.3052; 7.3052; 16.9706
90; 90; 120
784.318Basciano, L. C.; Peterson, R. C.
Crystal chemistry of the natrojarosite-jarosite and natrojarosite-hydronium jarosite solid-solution: A synthetic study with full Fe site occupancy Sample: L
American Mineralogist, 2008, 93, 853-862
9010441 CIFFe3 H6 K0.52 Na0.46 O14 S2R -3 m :H7.3079; 7.3079; 16.9028
90; 90; 120
781.762Basciano, L. C.; Peterson, R. C.
Crystal chemistry of the natrojarosite-jarosite and natrojarosite-hydronium jarosite solid-solution: A synthetic study with full Fe site occupancy Sample: M
American Mineralogist, 2008, 93, 853-862
9010442 CIFFe3 H6 K0.29 Na0.69 O14 S2R -3 m :H7.3101; 7.3101; 16.7658
90; 90; 120
775.892Basciano, L. C.; Peterson, R. C.
Crystal chemistry of the natrojarosite-jarosite and natrojarosite-hydronium jarosite solid-solution: A synthetic study with full Fe site occupancy Sample: N
American Mineralogist, 2008, 93, 853-862
9010443 CIFFe3 H6 K0.11 Na0.85 O14 S2R -3 m :H7.3144; 7.3144; 16.6491
90; 90; 120
771.399Basciano, L. C.; Peterson, R. C.
Crystal chemistry of the natrojarosite-jarosite and natrojarosite-hydronium jarosite solid-solution: A synthetic study with full Fe site occupancy Sample: O
American Mineralogist, 2008, 93, 853-862
9010444 CIFFe3 H6 Na O14 S2R -3 m :H7.31525; 7.31525; 16.5868
90; 90; 120
768.691Basciano, L. C.; Peterson, R. C.
Crystal chemistry of the natrojarosite-jarosite and natrojarosite-hydronium jarosite solid-solution: A synthetic study with full Fe site occupancy Sample: P
American Mineralogist, 2008, 93, 853-862
9010445 CIFFe3 H6.13 Na0.87 O14 S2R -3 m :H7.31984; 7.31984; 16.6474
90; 90; 120
772.468Basciano, L. C.; Peterson, R. C.
Crystal chemistry of the natrojarosite-jarosite and natrojarosite-hydronium jarosite solid-solution: A synthetic study with full Fe site occupancy Sample: Q
American Mineralogist, 2008, 93, 853-862
9010446 CIFFe3 H6.33 Na0.67 O14 S2R -3 m :H7.3254; 7.3254; 16.7209
90; 90; 120
777.057Basciano, L. C.; Peterson, R. C.
Crystal chemistry of the natrojarosite-jarosite and natrojarosite-hydronium jarosite solid-solution: A synthetic study with full Fe site occupancy Sample: R
American Mineralogist, 2008, 93, 853-862
9010447 CIFFe3 H6.51 Na0.49 O14 S2R -3 m :H7.33876; 7.33876; 16.8105
90; 90; 120
784.073Basciano, L. C.; Peterson, R. C.
Crystal chemistry of the natrojarosite-jarosite and natrojarosite-hydronium jarosite solid-solution: A synthetic study with full Fe site occupancy Sample: S
American Mineralogist, 2008, 93, 853-862
9010448 CIFFe3 H6.65 Na0.35 O14 S2R -3 m :H7.342; 7.342; 16.8574
90; 90; 120
786.955Basciano, L. C.; Peterson, R. C.
Crystal chemistry of the natrojarosite-jarosite and natrojarosite-hydronium jarosite solid-solution: A synthetic study with full Fe site occupancy Sample: T
American Mineralogist, 2008, 93, 853-862
9010449 CIFFe3 H6.76 Na0.24 O14 S2R -3 m :H7.34742; 7.34742; 16.9253
90; 90; 120
791.292Basciano, L. C.; Peterson, R. C.
Crystal chemistry of the natrojarosite-jarosite and natrojarosite-hydronium jarosite solid-solution: A synthetic study with full Fe site occupancy Sample: U
American Mineralogist, 2008, 93, 853-862
9010450 CIFFe0.61 Mn0.04 S Zn0.35F -4 3 m5.441; 5.441; 5.441
90; 90; 90
161.078Britvin, S. N.; Bogdanova, A. N.; Boldyreva, M. M.; Aksenova, G. Y.
Rudashevskyite, the Fe-dominant analogue of sphalerite, a new mineral: Description and crystal structure Sample: Domain 1
American Mineralogist, 2008, 93, 902-909
9010451 CIFFe0.61 Mn0.04 S Zn0.35F -4 3 m5.439; 5.439; 5.439
90; 90; 90
160.9Britvin, S. N.; Bogdanova, A. N.; Boldyreva, M. M.; Aksenova, G. Y.
Rudashevskyite, the Fe-dominant analogue of sphalerite, a new mineral: Description and crystal structure Sample: Domain 2
American Mineralogist, 2008, 93, 902-909
9010452 CIFFe0.61 Mn0.04 S Zn0.35F -4 3 m5.444; 5.444; 5.444
90; 90; 90
161.345Britvin, S. N.; Bogdanova, A. N.; Boldyreva, M. M.; Aksenova, G. Y.
Rudashevskyite, the Fe-dominant analogue of sphalerite, a new mineral: Description and crystal structure Sample: Domain 3
American Mineralogist, 2008, 93, 902-909
9010453 CIFCd2 Cu2 H10 O17 P2 SP n m a10.4768; 20.8938; 6.164
90; 90; 90
1349.3Elliot, P.; Brugger, J.; Pring, A.; Cole, M. L.; Willis, A. C.; Kolitsch, U.
Birchite, a new mineral from Broken Hill, New South Wales, Australia: Description and structure refinement
American Mineralogist, 2008, 93, 910-917
9010454 CIFAl8 B4 O18C 1 2/m 114.8056; 5.5413; 15.0531
90; 90.913; 90
1234.83Fischer, R. X.; Kahlenberg, V.; Voll, D.; MacKenzie, K. J. D.; Smith, M. E.; Schnetger, B.; Brumsack, H.-J.; Schneider, H.
Crystal structure of synthetic Al4B2O9: A member of the mullite family closely related to boralsilite
American Mineralogist, 2008, 93, 918-927
9010455 CIFFe3 H18 Mg2 Na O26 P4P 1 2/a 115.0811; 7.1403; 9.8299
90; 110.445; 90
991.841Kampf, A. R.; Steele, I. M.; Loomis, T. A.
Jahnsite-(NaFeMg), a new mineral from the Tip Top mine, Custer County, South Dakota: Description and crystal structure
American Mineralogist, 2008, 93, 940-945
9010456 CIFGe Mg O3C m c m2.5718; 8.3274; 6.3536
90; 90; 90
136.071Kubo, A.; Kiefer, B.; Shim, S. H.; Shen, G.; Prakapenka, V. B.; Duffy, T. S.
Rietveld structure refinement of MgGeO3 post-perovskite phase to 1 Mbar Sample: A036, P = 105.4 GPa, T = 300 K
American Mineralogist, 2008, 93, 965-976
9010457 CIFGe Mg O3C m c m2.5677; 8.3132; 6.3453
90; 90; 90
135.446Kubo, A.; Kiefer, B.; Shim, S. H.; Shen, G.; Prakapenka, V. B.; Duffy, T. S.
Rietveld structure refinement of MgGeO3 post-perovskite phase to 1 Mbar Sample: A038, P = 109.3 GPa, T = 300 K
American Mineralogist, 2008, 93, 965-976
9010458 CIFGe Mg O3C m c m2.5811; 8.3628; 6.373
90; 90; 90
137.563Kubo, A.; Kiefer, B.; Shim, S. H.; Shen, G.; Prakapenka, V. B.; Duffy, T. S.
Rietveld structure refinement of MgGeO3 post-perovskite phase to 1 Mbar Sample: A042, P = 100.2 GPa, T = 300 K
American Mineralogist, 2008, 93, 965-976
9010459 CIFGe Mg O3C m c m2.6001; 8.4123; 6.4099
90; 90; 90
140.203Kubo, A.; Kiefer, B.; Shim, S. H.; Shen, G.; Prakapenka, V. B.; Duffy, T. S.
Rietveld structure refinement of MgGeO3 post-perovskite phase to 1 Mbar Sample: B017, P = 92.1 GPa, T = 1740 K
American Mineralogist, 2008, 93, 965-976
9010460 CIFGe Mg O3C m c m2.5987; 8.4107; 6.4079
90; 90; 90
140.057Kubo, A.; Kiefer, B.; Shim, S. H.; Shen, G.; Prakapenka, V. B.; Duffy, T. S.
Rietveld structure refinement of MgGeO3 post-perovskite phase to 1 Mbar Sample: B018, P = 93.6 GPa, T = 1420 K
American Mineralogist, 2008, 93, 965-976
9010461 CIFGe Mg O3C m c m2.5971; 8.4089; 6.4064
90; 90; 90
139.908Kubo, A.; Kiefer, B.; Shim, S. H.; Shen, G.; Prakapenka, V. B.; Duffy, T. S.
Rietveld structure refinement of MgGeO3 post-perovskite phase to 1 Mbar Sample: B019, P = 87.8 GPa, T = 300 K
American Mineralogist, 2008, 93, 965-976
9010462 CIFGe Mg O3C m c m2.5949; 8.4009; 6.4013
90; 90; 90
139.545Kubo, A.; Kiefer, B.; Shim, S. H.; Shen, G.; Prakapenka, V. B.; Duffy, T. S.
Rietveld structure refinement of MgGeO3 post-perovskite phase to 1 Mbar Sample: B020, P = 89.5 GPa, T = 300 K
American Mineralogist, 2008, 93, 965-976
9010463 CIFGe Mg O3C m c m2.6018; 8.4259; 6.4161
90; 90; 90
140.657Kubo, A.; Kiefer, B.; Shim, S. H.; Shen, G.; Prakapenka, V. B.; Duffy, T. S.
Rietveld structure refinement of MgGeO3 post-perovskite phase to 1 Mbar Sample: B038, P = 85.0 GPa, T = 300 K
American Mineralogist, 2008, 93, 965-976
9010464 CIFGe Mg O3C m c m2.6113; 8.4602; 6.4381
90; 90; 90
142.231Kubo, A.; Kiefer, B.; Shim, S. H.; Shen, G.; Prakapenka, V. B.; Duffy, T. S.
Rietveld structure refinement of MgGeO3 post-perovskite phase to 1 Mbar Sample: B040, P = 79.2 GPa, T = 300 K
American Mineralogist, 2008, 93, 965-976
9010465 CIFGe Mg O3C m c m2.6127; 8.4674; 6.4413
90; 90; 90
142.499Kubo, A.; Kiefer, B.; Shim, S. H.; Shen, G.; Prakapenka, V. B.; Duffy, T. S.
Rietveld structure refinement of MgGeO3 post-perovskite phase to 1 Mbar Sample: B041, P = 78.2 GPa, T = 300 K
American Mineralogist, 2008, 93, 965-976
9010466 CIFAl Cs O4 SiP c 21 n9.414; 5.435; 8.875
90; 90; 90
454.09Gatta, G. D.; Rotiroti, N.; Zanazzi, P. F.; Rieder, M.; Drabek, M.; Weiss, Z.; Klaska, R.
Synthesis and crystal structure of the feldspathoid CsAlSiO4: An open-framework silicate and potential nuclear waste disposal phase
American Mineralogist, 2008, 93, 988-995
9010467 CIFB0.8 Be1.08 Ca0.8 Ce0.24 Dy0.04 Er0.02 Eu2 Fe0.71 Gd0.04 La0.06 Li0.35 Mg0.02 Mn0.03 Nd0.16 O10 Pr0.04 Si2 Sm0.04 Th0.14 U0.02 Y0.38 Yb0.02P 1 21/c 14.7708; 7.6229; 9.8975
90; 90.017; 90
359.946Camara, F.; Oberti, R.; Ottolini, L.; Ventura, G. D.; Bellatreccia, F.
The crystal chemistry of Li in gadolinite
American Mineralogist, 2008, 93, 996-1004
9010468 CIFCa Fe O6 Si2C 1 2/c 19.8447; 9.0234; 5.2509
90; 104.862; 90
450.847Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd0Hd100 at P = 0 GPa
American Mineralogist, 2008, 93, 1005-1013
9010469 CIFCa Fe O6 Si2C 1 2/c 19.7553; 8.8998; 5.1923
90; 104.29; 90
436.848Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd0Hd100 at P = 3.80 GPa
American Mineralogist, 2008, 93, 1005-1013
9010470 CIFAl Na O6 Si2C 1 2/c 19.4278; 8.5651; 5.2262
90; 107.624; 90
402.208Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd100Hd0, P = 0 GPa
American Mineralogist, 2008, 93, 1005-1013
9010471 CIFAl Na O6 Si2C 1 2/c 19.3488; 8.5013; 5.1856
90; 107.345; 90
393.395Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd100Hd0, P = 3.14 GPa
American Mineralogist, 2008, 93, 1005-1013
9010472 CIFAl Na O6 Si2C 1 2/c 19.2411; 8.4053; 5.1236
90; 106.906; 90
380.773Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd100Hd0, P = 8.31 GPa
American Mineralogist, 2008, 93, 1005-1013
9010473 CIFAl0.24 Ca0.76 Fe0.76 Na0.24 O6 Si2C 1 2/c 19.734; 8.9103; 5.2682
90; 105.904; 90
439.436Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd24Hd76, P = 0 GPa
American Mineralogist, 2008, 93, 1005-1013
9010474 CIFAl0.24 Ca0.76 Fe0.76 Na0.24 O6 Si2C 1 2/c 19.641; 8.792; 5.2122
90; 105.391; 90
425.961Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd24Hd76, P = 3.87 GPa
American Mineralogist, 2008, 93, 1005-1013
9010475 CIFAl0.24 Ca0.76 Fe0.76 Na0.24 O6 Si2C 1 2/c 19.5525; 8.6648; 5.155
90; 104.972; 90
412.197Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd24Hd76, P = 8.76 GPa
American Mineralogist, 2008, 93, 1005-1013
9010476 CIFAl0.52 Ca0.47 Fe0.48 Na0.53 O6 Si2C 1 2/c 19.6031; 8.7735; 5.2656
90; 106.725; 90
424.874Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd53Hd47, P = 0 GPa
American Mineralogist, 2008, 93, 1005-1013
9010477 CIFAl0.52 Ca0.47 Fe0.48 Na0.53 O6 Si2C 1 2/c 19.5135; 8.6765; 5.2158
90; 106.317; 90
413.191Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd53Hd47, P = 3.65 GPa
American Mineralogist, 2008, 93, 1005-1013
9010478 CIFAl0.52 Ca0.47 Fe0.48 Na0.53 O6 Si2C 1 2/c 19.4632; 8.617; 5.1857
90; 106.097; 90
406.286Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd53Hd47, P = 6.09 GPa
American Mineralogist, 2008, 93, 1005-1013
9010479 CIFC H2 Ca O4P 3110.5547; 10.5547; 7.5644
90; 90; 120
729.788Swainson, I. P.
The structure of monohydrocalcite and the phase composition of the beachrock deposits of Lake Butler and Lake Fellmongery, South Australia
American Mineralogist, 2008, 93, 1014-1018
9010480 CIFAl Na0.981 O4 SiP 1 1 219.9897; 9.9622; 24.979
90; 90; 119.788
2157.43Vulic, P.; Kahlenberg, V.; Konzett, J.
On the existence of a Na-deficient monoclinic trinepheline with composition Na7.85Al7.85Si8.15O32
American Mineralogist, 2008, 93, 1072-1079
9010481 CIFCa Ir O3C m c m3.1472; 9.8655; 7.3018
90; 90; 90
226.711Sugahara, M.; Yoshiasa, A.; Yoneda, A.; Hashimoto, T.; Sakai, S.; Okube, M.; Nakatsuka, A.; Ohtaka, O.
Single-crystal X-ray diffraction study of CaIrO3 Note: post-perovskite structure
American Mineralogist, 2008, 93, 1148-1152
9010482 CIFBe H Na O8 Si3P n m a12.7334; 13.6298; 7.3467
90; 90; 90
1275.05Gatta, G. D.; Rotiroti, N.; McIntyre, G. J.; Guastoni, A.; Nestola, F.
New insights into the crystal chemistry of epididymite and eudidymite from Malosa, Malawi: A single-crystal neutron diffraction study
American Mineralogist, 2008, 93, 1158-1165
9010483 CIFBe2 H2 Na2 O16 Si6C 1 2/c 112.6188; 7.3781; 13.994
90; 103.762; 90
1265.48Gatta, G. D.; Rotiroti, N.; McIntyre, G. J.; Guastoni, A.; Nestola, F.
New insights into the crystal chemistry of epididymite and eudidymite from Malosa, Malawi: A single-crystal neutron diffraction study
American Mineralogist, 2008, 93, 1158-1165
9010484 CIFAs3 Co1.5 Fe1.5 S3P n 21 m14.158; 5.6462; 3.3196
90; 90; 90
265.365Yang, H.; Downs, R. T.
Crystal structure of glaucodot, (Co,Fe)AsS, and its relationships to marcasite and arsenopyrite
American Mineralogist, 2008, 93, 1183-1186
9010485 CIFAl2 Na2 O10 Si3F d d 217.574; 18.161; 6.3674
90; 90; 90
2032.23Wang, H.; Bish, D. L.
A PH2O-dependent structural phase transition in the zeolite natrolite Sample: alpha2-metanatrolite at 400 C, 0.15 mbar
American Mineralogist, 2008, 93, 1191-1194
9010486 CIFGe Mg2 O4F d -3 m :28.246; 8.246; 8.246
90; 90; 90
560.699Thomas, S. M.; Muller, M. K.; Kahlenberg, V.; Thomas, R.; Rhede, D.; Wirth, R.; Wunder, B.
Protonation in germanium equivalents of ringwoodite, anhydrous phase B, and superhydrous phase B Note: Ge-ringwoodite
American Mineralogist, 2008, 93, 1282-1294
9010487 CIFGe5 Mg14 O24P b a m14.52; 10.231; 5.947
90; 90; 90
883.451Thomas, S. M.; Muller, M. K.; Kahlenberg, V.; Thomas, R.; Rhede, D.; Wirth, R.; Wunder, B.
Protonation in germanium equivalents of ringwoodite, anhydrous phase B, and superhydrous phase B Note: Ge-anhydrous phase B
American Mineralogist, 2008, 93, 1282-1294
9010488 CIFGe3 H4 Mg10 O18P n n 214.202; 5.1676; 8.8756
90; 90; 90
651.383Thomas, S. M.; Muller, M. K.; Kahlenberg, V.; Thomas, R.; Rhede, D.; Wirth, R.; Wunder, B.
Protonation in germanium equivalents of ringwoodite, anhydrous phase B, and superhydrous phase B Note: superhydrous phase B Ge-ringwoodite Note: published bond lengths could not be reproduced
American Mineralogist, 2008, 93, 1282-1294
9010489 CIFCa9.181 Fe0.429 H0.693 Mg0.571 O28 P7R 3 c :H10.3612; 10.3612; 37.096
90; 90; 120
3448.88Hughes, J. M.; Jolliff, B. L.; Rakovan, J.
The crystal chemistry of whitlockite and merrillite and the dehydrogenation of whitlockite to merrillite Locality: Palermo Mine, North Groton, Grafton County, New Hampshire
American Mineralogist, 2008, 93, 1300-1305
9010490 CIFCa9.061 Fe0.014 H0.89 Mg0.986 O28 P7R 3 c :H10.3477; 10.3477; 37.077
90; 90; 120
3438.14Hughes, J. M.; Jolliff, B. L.; Rakovan, J.
The crystal chemistry of whitlockite and merrillite and the dehydrogenation of whitlockite to merrillite Locality: Tip Top Pegmatite, Custer County, South Dakota
American Mineralogist, 2008, 93, 1300-1305
9010491 CIFCa9.06 Fe0.079 H0.87 Mg0.921 O28 P7R 3 c :H10.3571; 10.3571; 37.138
90; 90; 120
3450.05Hughes, J. M.; Jolliff, B. L.; Rakovan, J.
The crystal chemistry of whitlockite and merrillite and the dehydrogenation of whitlockite to merrillite Locality: synthetic Note: Standard temperature and pressure
American Mineralogist, 2008, 93, 1300-1305
9010492 CIFCa9.036 Fe0.084 H0.831 Mg0.916 O27.28 P7R 3 c :H10.3597; 10.3597; 37.161
90; 90; 120
3453.92Hughes, J. M.; Jolliff, B. L.; Rakovan, J.
The crystal chemistry of whitlockite and merrillite and the dehydrogenation of whitlockite to merrillite Note: Heated at 500 degrees C
American Mineralogist, 2008, 93, 1300-1305
9010493 CIFCa9.443 Fe0.065 Mg0.935 O28 P6.964R 3 c :H10.3499; 10.3499; 37.115
90; 90; 120
3443.12Hughes, J. M.; Jolliff, B. L.; Rakovan, J.
The crystal chemistry of whitlockite and merrillite and the dehydrogenation of whitlockite to merrillite Note: Formed through dehydrogenation of synthetic whitlockite by heating at 1050 degrees C for 24 hours
American Mineralogist, 2008, 93, 1300-1305
9010494 CIFAl3 Ca0.982 H14 K1.14 O17.11 Si3P -19.248; 9.259; 9.533
92.313; 92.761; 89.981
814.671Fischer, R. X.; Kahlenberg, V.; Lengauer, C. L.; Tillmanns, E.
Thermal behavior and structural transformation in the chabazite-type zeolite willhendersonite, KCaAl3Si3O12*5H2O Note: Room temperature
American Mineralogist, 2008, 93, 1317-1325
9010495 CIFAl3 Ca0.987 H4.68 K1.537 O15.82 Si3P -19.205; 9.231; 9.442
92.55; 93.086; 90.519
800.29Fischer, R. X.; Kahlenberg, V.; Lengauer, C. L.; Tillmanns, E.
Thermal behavior and structural transformation in the chabazite-type zeolite willhendersonite, KCaAl3Si3O12*5H2O Note: T = 373K
American Mineralogist, 2008, 93, 1317-1325
9010496 CIFAl6 Ca1.617 K1.842 O24 Si6R -3 :R9.411; 9.411; 9.411
91.48; 91.48; 91.48
832.654Fischer, R. X.; Kahlenberg, V.; Lengauer, C. L.; Tillmanns, E.
Thermal behavior and structural transformation in the chabazite-type zeolite willhendersonite, KCaAl3Si3O12*5H2O Note: T = 423K
American Mineralogist, 2008, 93, 1317-1325
9010497 CIFAl0.01 Ca1.94 Cl0.01 F0.03 Fe0.12 H1.96 K0.01 Mg4.85 Mn0.02 Na0.05 O23.96 Si8C 1 2/m 19.84174; 18.05932; 5.27876
90; 104.732; 90
907.378Ballirano, P.; Andreozzi, G. B.; Belardi, G.
Crystal chemical and structural characterization of fibrous tremolite from Susa Valley, Italy, with comments on potential harmful effects on human health Locality: Condove, Susa Valley, Italy
American Mineralogist, 2008, 93, 1349-1355
9010498 CIFAl2 Ca H12.64 O12.77 Si2P 1 21/c 110.0155; 10.6051; 9.8277
90; 92.409; 90
1042.93Ori, S.; Quartieri, S.; Vezzalini, G.; Dmitriev, V.
Pressure-induced over-hydration and water ordering in gismondine: a synchrotron powder diffraction study Note: ambient pressure
American Mineralogist, 2008, 93, 1393-1403
9010499 CIFAl2 Ca H12.64 O13 Si2P 1 21/c 19.8917; 10.5948; 9.7482
90; 92.2; 90
1020.86Ori, S.; Quartieri, S.; Vezzalini, G.; Dmitriev, V.
Pressure-induced over-hydration and water ordering in gismondine: a synchrotron powder diffraction study Note: pressure = 1.6 GPa
American Mineralogist, 2008, 93, 1393-1403
9010500 CIFAl2 Ca H10 O13 Si2P 1 21/c 19.7975; 10.626; 9.6977
90; 91.225; 90
1009.38Ori, S.; Quartieri, S.; Vezzalini, G.; Dmitriev, V.
Pressure-induced over-hydration and water ordering in gismondine: a synchrotron powder diffraction study Note: pressure = 1.9 GPa
American Mineralogist, 2008, 93, 1393-1403
9010501 CIFAl2 Ca H12.64 O12.95 Si2P 1 21/c 110.0264; 10.6094; 9.8377
90; 92.369; 90
1045.58Ori, S.; Quartieri, S.; Vezzalini, G.; Dmitriev, V.
Pressure-induced over-hydration and water ordering in gismondine: a synchrotron powder diffraction study Note: pressure = 0 after decompression
American Mineralogist, 2008, 93, 1393-1403
9010502 CIFCa Ge2 O5P b a m7.1236; 8.1912; 5.6468
90; 90; 90
329.495Nestola, F.; Nemeth, P.; Angel, R. J.; Buseck, P. R.
Equation of state and crystal structure of a new germanate post-titanite phase Locality: synthetic Note: pressure = 8.6 GPa
American Mineralogist, 2008, 93, 1424-1428
9010503 CIFAl0.5 Cl0.392 K Mg2.722 O11.608 Si3.5C 1 2/m 15.299; 9.167; 10.226
90; 100.06; 90
489.1Nazzareni, S.; Comodi, P.; Bindi, L.; Safonov, O. G.; Litvin, Y. A.; Perchuk, L. L.
Synthetic hypersilicic Cl-bearing mica in the phlogopite-celadonite join: a mulitmethodical characterization of the missing link between di- and tri- octahedral micas at high pressures
American Mineralogist, 2008, 93, 1429-1436
9010504 CIFC0.042 Ca5 F0.921 O12.321 P2.883P 63/m9.3648; 9.3648; 6.8879
90; 90; 120
523.136Fleet, M. E.; Liu, X.
Accommodation of the carbonate ion in fluorapatite synthesized at high pressure Locality: synthetic Note: LM130 sample
American Mineralogist, 2008, 93, 1460-1469
9010505 CIFC0.078 Ca5 F0.842 O12.402 P2.895P 63/m9.3679; 9.3679; 6.8885
90; 90; 120
523.528Fleet, M. E.; Liu, X.
Accommodation of the carbonate ion in fluorapatite synthesized at high pressure Locality: synthetic Note: LM136 sample
American Mineralogist, 2008, 93, 1460-1469
9010506 CIFC0.066 Ca5 F0.864 O12.381 P2.883P 63/m9.3659; 9.3659; 6.8901
90; 90; 120
523.426Fleet, M. E.; Liu, X.
Accommodation of the carbonate ion in fluorapatite synthesized at high pressure Locality: synthetic Note: LM142 sample
American Mineralogist, 2008, 93, 1460-1469
9010507 CIFC0.834 Al4.68 Ca3.176 Na0.824 O27.084 S0.146 Si7.32I 4/m12.16711; 12.16711; 7.575466
90; 90; 90
1121.46Antao, S. M.; Hassan, I.
Unusual Al-Si ordering in calcic scapolite, Me79.6, with increasing temperature T = 25 C (HRPXRD)
American Mineralogist, 2008, 93, 1470-1477
9010508 CIFC0.834 Al4.68 Ca3.176 Na0.824 O27.084 S0.146 Si7.32I 4/m12.1667; 12.1667; 7.5758
90; 90; 90
1121.44Antao, S. M.; Hassan, I.
Unusual Al-Si ordering in calcic scapolite, Me79.6, with increasing temperature T = 26 C
American Mineralogist, 2008, 93, 1470-1477
9010509 CIFC0.834 Al4.68 Ca3.176 Na0.824 O27.084 S0.146 Si7.32I 4/m12.1736; 12.1736; 7.5757
90; 90; 90
1122.69Antao, S. M.; Hassan, I.
Unusual Al-Si ordering in calcic scapolite, Me79.6, with increasing temperature T = 101
American Mineralogist, 2008, 93, 1470-1477
9010510 CIFC0.834 Al4.68 Ca3.176 Na0.824 O27.084 S0.146 Si7.32I 4/m12.1834; 12.1834; 7.5761
90; 90; 90
1124.56Antao, S. M.; Hassan, I.
Unusual Al-Si ordering in calcic scapolite, Me79.6, with increasing temperature T = 196
American Mineralogist, 2008, 93, 1470-1477
9010511 CIFC0.834 Al4.68 Ca3.176 Na0.824 O27.084 S0.146 Si7.32I 4/m12.195; 12.195; 7.5771
90; 90; 90
1126.85Antao, S. M.; Hassan, I.
Unusual Al-Si ordering in calcic scapolite, Me79.6, with increasing temperature T = 296
American Mineralogist, 2008, 93, 1470-1477
9010512 CIFC0.834 Al4.68 Ca3.176 Na0.824 O27.084 S0.146 Si7.32I 4/m12.2067; 12.2067; 7.578
90; 90; 90
1129.15Antao, S. M.; Hassan, I.
Unusual Al-Si ordering in calcic scapolite, Me79.6, with increasing temperature T = 396
American Mineralogist, 2008, 93, 1470-1477
9010513 CIFC0.834 Al4.68 Ca3.176 Na0.824 O27.084 S0.146 Si7.32I 4/m12.2192; 12.2192; 7.5792
90; 90; 90
1131.64Antao, S. M.; Hassan, I.
Unusual Al-Si ordering in calcic scapolite, Me79.6, with increasing temperature T = 494
American Mineralogist, 2008, 93, 1470-1477
9010514 CIFC0.834 Al4.68 Ca3.176 Na0.824 O27.084 S0.146 Si7.32I 4/m12.2322; 12.2322; 7.5806
90; 90; 90
1134.26Antao, S. M.; Hassan, I.
Unusual Al-Si ordering in calcic scapolite, Me79.6, with increasing temperature T = 594
American Mineralogist, 2008, 93, 1470-1477
9010515 CIFC0.834 Al4.68 Ca3.176 Na0.824 O27.084 S0.146 Si7.32I 4/m12.2475; 12.2475; 7.5823
90; 90; 90
1137.35Antao, S. M.; Hassan, I.
Unusual Al-Si ordering in calcic scapolite, Me79.6, with increasing temperature T = 694
American Mineralogist, 2008, 93, 1470-1477
9010516 CIFC0.834 Al4.68 Ca3.176 Na0.824 O27.084 S0.146 Si7.32I 4/m12.2618; 12.2618; 7.5841
90; 90; 90
1140.28Antao, S. M.; Hassan, I.
Unusual Al-Si ordering in calcic scapolite, Me79.6, with increasing temperature T = 793
American Mineralogist, 2008, 93, 1470-1477
9010517 CIFC0.834 Al4.08 Ca3.176 Na0.824 O27.084 S0.146 Si7.92I 4/m12.2778; 12.2778; 7.5861
90; 90; 90
1143.56Antao, S. M.; Hassan, I.
Unusual Al-Si ordering in calcic scapolite, Me79.6, with increasing temperature T = 900
American Mineralogist, 2008, 93, 1470-1477
9010639 CIFAl3.7 Ca1.95 Cr0.07 F0.42 Fe0.22 H1.58 K0.17 Mg3.35 Na0.86 O23.58 Si5.5 Ti0.16C 1 2/m 19.857; 17.899; 5.318
90; 105.36; 90
904.743Hawthorne, F. C.; Harlow, G. E.
The crystal chemistry of Al-rich amphiboles: sadanagaite and potassic-ferrisadanagaite Locality: Dattaw mine, Mogok Stone Tract, Mandalay Division, Myanmar
The Canadian Mineralogist, 2008, 46, 151-162
9010640 CIFAl3.62 Ca1.72 F0.3 Fe3.11 H1.7 K0.62 Mg0.68 Mn0.26 Na0.6 O23.7 Si5.1 Ti0.21 Zn0.02C 1 2/m 19.9257; 18.0917; 5.3709
90; 105.19; 90
930.771Hawthorne, F. C.; Harlow, G. E.
The crystal chemistry of Al-rich amphiboles: sadanagaite and potassic-ferrisadanagaite Locality: Ilmen alkaline massif, South Urals, Russia
The Canadian Mineralogist, 2008, 46, 151-162
9010641 CIFBa0.04 Ca6.16 F1.63 K1.93 Li6 Na2.39 O66.37 Rb0.03 Si24 Sr0.17 Ti4P -19.8156; 9.8249; 17.3087
99.209; 94.67; 119.839
1403.74Uvarova Yu, A.; Sokolova, E.; Hawthorne, F. C.; Agakhanov, A. A.; Pautov, L. A.
The crystal chemistry of faizievite, K2Li6Na(Ca6Na)Ti4[Si6O18]2[Si12O30]F2, a novel structure based on intercalated blocks of the baratovite and berezanskite structures Locality: Dara-i-Poiz glacier, Alai mountain ridge, Tien-Shan Mountains, Tajikistan
The Canadian Mineralogist, 2008, 46, 163-171
9010642 CIFCo1.206 H14 K0.77 O26.07 S2 U4C 1 2/c 18.651; 14.188; 17.713
90; 104.14; 90
2108.23Peeters, O. M.; Vochten, R.; Blaton, N.
The crystal structures of synthetic potassium - transition-metal zippeite-group phases Sample: K-Co
The Canadian Mineralogist, 2008, 46, 173-182
9010643 CIFH14 K0.778 Mn1.216 O25.94 S2 U4C 1 2/c 18.661; 14.375; 17.705
90; 104.12; 90
2137.71Peeters, O. M.; Vochten, R.; Blaton, N.
The crystal structures of synthetic potassium - transition-metal zippeite-group phases Sample: K-Mn
The Canadian Mineralogist, 2008, 46, 173-182
9010644 CIFH14 K0.598 Ni1.083 O26.08 S2 U4C 1 2/c 18.662; 14.095; 17.77
90; 104.18; 90
2103.45Peeters, O. M.; Vochten, R.; Blaton, N.
The crystal structures of synthetic potassium - transition-metal zippeite-group phases Sample: K-Ni
The Canadian Mineralogist, 2008, 46, 173-182
9010645 CIFH14 K0.74 O25.95 S2 U4 Zn1.148C 1 2/c 18.65; 14.18; 17.709
90; 104.14; 90
2106.32Peeters, O. M.; Vochten, R.; Blaton, N.
The crystal structures of synthetic potassium - transition-metal zippeite-group phases Sample: K-Zn
The Canadian Mineralogist, 2008, 46, 173-182
9010646 CIFC B3 Ca4 Mn3 O15P 63/m10.60791; 10.60791; 5.88603
90; 90; 120
573.605Antao, S. M.; Hassan, I.
Gaudefroyite, Ca8Mn3+6[(BO3)6(CO3)2O6]: high-temperature crystal structure Sample: HRPXRD, T = 25 C
The Canadian Mineralogist, 2008, 46, 183-193
9010647 CIFC B3 Ca4 Mn3 O15P 63/m10.60074; 10.60074; 5.88402
90; 90; 120
572.634Antao, S. M.; Hassan, I.
Gaudefroyite, Ca8Mn3+6[(BO3)6(CO3)2O6]: high-temperature crystal structure Sample: T = 25 C
The Canadian Mineralogist, 2008, 46, 183-193
9010648 CIFC B3 Ca4 Mn3 O15P 63/m10.60643; 10.60643; 5.88761
90; 90; 120
573.599Antao, S. M.; Hassan, I.
Gaudefroyite, Ca8Mn3+6[(BO3)6(CO3)2O6]: high-temperature crystal structure Sample: T = 59 C
The Canadian Mineralogist, 2008, 46, 183-193
9010649 CIFC B3 Ca4 Mn3 O15P 63/m10.61129; 10.61129; 5.89062
90; 90; 120
574.418Antao, S. M.; Hassan, I.
Gaudefroyite, Ca8Mn3+6[(BO3)6(CO3)2O6]: high-temperature crystal structure Sample: T = 93 C
The Canadian Mineralogist, 2008, 46, 183-193
9010650 CIFC B3 Ca4 Mn3 O15P 63/m10.61864; 10.61864; 5.89528
90; 90; 120
575.669Antao, S. M.; Hassan, I.
Gaudefroyite, Ca8Mn3+6[(BO3)6(CO3)2O6]: high-temperature crystal structure Sample: T = 145 C
The Canadian Mineralogist, 2008, 46, 183-193
9010651 CIFC B3 Ca4 Mn3 O15P 63/m10.62601; 10.62601; 5.90008
90; 90; 120
576.938Antao, S. M.; Hassan, I.
Gaudefroyite, Ca8Mn3+6[(BO3)6(CO3)2O6]: high-temperature crystal structure Sample: T = 196 C
The Canadian Mineralogist, 2008, 46, 183-193
9010652 CIFC B3 Ca4 Mn3 O15P 63/m10.63402; 10.63402; 5.9052
90; 90; 120
578.309Antao, S. M.; Hassan, I.
Gaudefroyite, Ca8Mn3+6[(BO3)6(CO3)2O6]: high-temperature crystal structure Sample: T = 247 C
The Canadian Mineralogist, 2008, 46, 183-193
9010653 CIFC B3 Ca4 Mn3 O15P 63/m10.64342; 10.64342; 5.91056
90; 90; 120
579.858Antao, S. M.; Hassan, I.
Gaudefroyite, Ca8Mn3+6[(BO3)6(CO3)2O6]: high-temperature crystal structure Sample: T = 298 C
The Canadian Mineralogist, 2008, 46, 183-193
9010654 CIFC B3 Ca4 Mn3 O15P 63/m10.65448; 10.65448; 5.91703
90; 90; 120
581.7Antao, S. M.; Hassan, I.
Gaudefroyite, Ca8Mn3+6[(BO3)6(CO3)2O6]: high-temperature crystal structure Sample: T = 350 C
The Canadian Mineralogist, 2008, 46, 183-193
9010655 CIFC B3 Ca4 Mn3 O15P 63/m10.65998; 10.65998; 5.92041
90; 90; 120
582.633Antao, S. M.; Hassan, I.
Gaudefroyite, Ca8Mn3+6[(BO3)6(CO3)2O6]: high-temperature crystal structure Sample: T = 384 C
The Canadian Mineralogist, 2008, 46, 183-193
9010656 CIFC B3 Ca4 Mn3 O15P 63/m10.66317; 10.66317; 5.92221
90; 90; 120
583.159Antao, S. M.; Hassan, I.
Gaudefroyite, Ca8Mn3+6[(BO3)6(CO3)2O6]: high-temperature crystal structure Sample: T = 401 C
The Canadian Mineralogist, 2008, 46, 183-193
9010657 CIFC B3 Ca4 Mn3 O15P 63/m10.67026; 10.67026; 5.92616
90; 90; 120
584.324Antao, S. M.; Hassan, I.
Gaudefroyite, Ca8Mn3+6[(BO3)6(CO3)2O6]: high-temperature crystal structure Sample: T = 452 C
The Canadian Mineralogist, 2008, 46, 183-193
9010658 CIFC B3 Ca4 Mn3 O15P 63/m10.67467; 10.67467; 5.92984
90; 90; 120
585.171Antao, S. M.; Hassan, I.
Gaudefroyite, Ca8Mn3+6[(BO3)6(CO3)2O6]: high-temperature crystal structure Sample: T = 486 C
The Canadian Mineralogist, 2008, 46, 183-193
9010659 CIFC6 H6 Ba2.79 Ca0.95 Ce0.13 Na1.07 O21 Sr0.31 Y0.74C 1 c 115.8213; 9.1364; 13.7522
90; 112.44; 90
1837.35Demartin, F.; Gramaccioli, C. M.; Campostrini, I.; Diella, V.
The crystal structure of mckelveyite-(Y)-2M, a new monoclinic polytype from Val Malenco, Italian Alps Locality: "Cava Fabi," talc quarry near Lanzada, Val Malenco, Lombardy, Italy
The Canadian Mineralogist, 2008, 46, 195-203
9010660 CIFAs2.08 S0.64 Se2.28P 1 21/n 111.891; 9.742; 4.274
90; 90.03; 90
495.109Bindi, L.; Bonazzi, P.; Spry, P. G.
Effects of sulfur-for-selenium substitution on the structure of laphamite, As2(Se,S)3 Locality: Western Middle Anthracite field, Northumberland County, Pennsylvania Sample: LAP1
The Canadian Mineralogist, 2008, 46, 269-274
9010661 CIFAs2.04 S0.71 Se2.25P 1 21/n 111.934; 9.804; 4.268
90; 90.32; 90
499.352Bindi, L.; Bonazzi, P.; Spry, P. G.
Effects of sulfur-for-selenium substitution on the structure of laphamite, As2(Se,S)3 Locality: Western Middle Anthracite field, Northumberland County, Pennsylvania Sample: LAP2
The Canadian Mineralogist, 2008, 46, 269-274
9010662 CIFAl0.03 Ba0.88 Ca0.13 Fe0.35 K0.61 Mg0.05 Mn0.28 Na2.09 Nb0.01 O18 Si4 Sr0.33 Ti2.91C 1 2/m 119.8971; 7.1165; 5.4108
90; 96.676; 90
760.962Sokolova, E.; Camara, F.
From structure topology to chemical composition. III. Titanium silicates: The crystal chemistry of barytolamprophyllite
The Canadian Mineralogist, 2008, 46, 403-412
9010663 CIFC2 H0.25 Ca0.039 Ce1.03 La0.621 Na1.906 Nb0.109 Nd0.229 O12.11 Pr0.081 Si Sm0.014 Ti0.875P -17.576; 13.9252; 5.029
99.981; 70.791; 100.947
488.363Grice, J. D.; Rowe, R.; Poirier, G.; Wight, Q.
Tundrite-(Ce) from Mount Saint-Hilaire, Quebec: Crystal-structure analysis and species characterization
The Canadian Mineralogist, 2008, 46, 413-422
9010664 CIFAl0.381 As1.16 Ca0.02 Ce0.44 Fe1.671 La0.21 Nd0.22 O13 Si1.68 Sn0.009 Th0.06 Ti0.939 U0.02 Y0.03R 3 m :H6.508; 6.508; 18.52
90; 90; 120
679.308Demartin, F.; Gramaccioli, C. M.; Graeser, S.
The crystal structure of cervandonite-(Ce), an interesting example of As3+ - Si diadochy Note: Chemistry from original description of the mineral.
The Canadian Mineralogist, 2008, 46, 423-430
9010665 CIFB F22 K3 Na4 Si3I m m 25.522; 17.106; 9.175
90; 90; 90
866.664Demartin, F.; Gramaccioli, C. M.; Campostrini, I.; Orlandi, P.
Knasibfite, K3Na4[SiF6]3[BF4], a new hexafluorosilicate-tetrafluoroborate from La Fossa Crater, Vulcano, Aeolian Islands, Italy
The Canadian Mineralogist, 2008, 46, 447-453
9010666 CIFAg0.52 Bi4.48 Cu2 Pb S9C 1 2/m 113.405; 4.016; 29.949
90; 99.989; 90
1587.85Topa, D.; Makovicky, E.; Balic-Zunic T
What is the reason for the doubled unit-cell volumes of copper-lead-rich pavonite homologues? The crystal structures of cupromakovickyite and makovickyite
The Canadian Mineralogist, 2008, 46, 515-523
9010667 CIFAg0.68 Bi5.6 Cu1.062 S9C 1 2/m 113.239; 4.0547; 14.667
90; 99.397; 90
776.762Topa, D.; Makovicky, E.; Balic-Zunic T
What is the reason for the doubled unit-cell volumes of copper-lead-rich pavonite homologues? The crystal structures of cupromakovickyite and makovickyite
The Canadian Mineralogist, 2008, 46, 515-523
9010668 CIFAl0.152 Ca0.29 Cs0.09 F Fe5.64 H4 K0.75 Li1.14 Mg0.04 Mn0.9 Na0.8 Nb0.24 O30 Pb0.02 Si7.848 Sn0.09 Ta0.04 Ti1.56 Zn0.04 Zr0.16P -15.3745; 11.9299; 11.6509
113.325; 94.524; 103.08
656.214Uvarova, Y. A.; Sokolova, E.; Hawthorne, F. C.; Agakhanov, A. A.; Pautov, L. A.
The crystal structure of nalivkinite, a new lithium member of the astrophyllite group Locality: Tien-Shan Mountains, northern Tajikistan
The Canadian Mineralogist, 2008, 46, 651-659
9010669 CIFAl Fe4.47 H84 K2 Mg3.53 O66.252 S12I 41/a c d :219.208; 19.208; 27.2158
90; 90; 90
10041.2Ertl, A.; Dyar, M. D.; Hughes, J. M.; Brandstatter, F.; Gunter, M. E.; Prem, M.; Peterson, R. C.
Pertlikite, a new tetragonal Mg-rich member of the voltaite group from Madeni Zakh, Iran Locality: Madeni Zakh, Iran
The Canadian Mineralogist, 2008, 46, 661-669
9010670 CIFB H Mg O3P 1 21/a 112.586; 10.415; 3.134
90; 95.923; 90
408.622Grice, J. D.
Szaibelyite: Crystal structure analysis and hydrogen bonding
The Canadian Mineralogist, 2008, 46, 671-677
9010671 CIFCa2 H32 Mg O44 V10C 1 2/m 119.8442; 9.9353; 10.7149
90; 120.305; 90
1823.85Kampf, A. R.; Steele, I. M.
Magnesiopascoite, a new member of the pascoite group: description and crystal structure Locality: Blue Cap mine, San Juan County, Utah, USA
The Canadian Mineralogist, 2008, 46, 679-686
9010672 CIFCo0.15 H6 O11 V2 Zn2.64P -3 m 16.0818; 6.0818; 7.1793
90; 90; 120
229.973Kampf, A. R.; Steele, I. M.
Martyite, a new mineral species related to volborthite: Description and crystal structure Locality: Blue Cap mine, San Juan County, Utah
The Canadian Mineralogist, 2008, 46, 687-692
9010673 CIFAl F3 K2 O4 SP b c n10.81; 8.336; 6.822
90; 90; 90
614.745Demartin, F.; Gramaccioli, C. M.; Campostrini, I.; Orlandi, P.
Thermessaite, K2[AlF3|SO4], a new ino-aluminofluoride-sulfate from La Fossa crater, Vulcano, Aeolian Islands, Italy Locality: La Fossa crater, Vulcano, Aeolian Islands, Italy Note: z-coordinate of S altered
The Canadian Mineralogist, 2008, 46, 693-700
9010674 CIFCl5 Pb2 TlP 1 21/c 18.9477; 7.9218; 12.4955
90; 90.092; 90
885.704Campostrini, I.; Demartin, F.; Gramaccioli, C. M.; Orlandi, P.
Hephaistosite, TlPb2Cl5, a new thallium mineral series from La Fossa Crater, Vulcano, Aeolian Islands, Italy Location: La Fossa Crater, Vulcano, Aeolian Islands, Italy
The Canadian Mineralogist, 2008, 46, 701-708
9010675 CIFFe3 H9 O14 P2 PbP -15.309; 7.211; 7.349
87.74; 86.38; 71.4
266.061Kolitsch, U.; Bernhardt, H.-J.; Krause, W.; Blass, G.
Pattersonite, PbFe3(PO4)2(OH)4[(H2O)0.5(OH)0.5]2, a new supergene phosphate mineral: description and crystal structure
European Journal of Mineralogy, 2008, 20, 281-288
9010839 CIFAl2 Ca H4 O10 Si2C m c m5.85; 8.79; 13.122
90; 90; 90
674.753Kolesov, B. A.; Lager, G. A.; Schultz, A. J.
Behaviour of H2O and OH in lawsonite: a single-crystal neutron diffraction and Raman spectroscopic investigation Sample: T = 295 K
European Journal of Mineralogy, 2008, 20, 63-72
9010840 CIFAl0.75 Ca1.65 Fe0.8 H3 Mg0.3 Mn1.05 O13 Si2.6 V0.35C m c m6.066; 8.908; 18.995
90; 90; 90
1026.41Basso, R.; Carbone, C.; Palenzona, A.
Cassagnaite, a new, V-bearing silicate mineral from the Cassagna mine, northern Apennines, Italy
European Journal of Mineralogy, 2008, 20, 95-100
9010841 CIFAl1.04 Ca0.04 K0.65 Na0.31 O8 Si2.96C 1 2/m 18.437; 13.003; 7.172
90; 116.1; 90
706.58Menna, M.; Tribaudino, M.; Renzulli, A.
Al-Si order and spinodal decomposition texture of sanidine from igneous clasts of Stromboli (southern Italy): insights into the timing between the emplacement of a shallow basic sheet intrusion and the eruption of related ejecta Locality: Stromboli volcano, southern Italy
European Journal of Mineralogy, 2008, 20, 183-190
9010842 CIFAl4.8 Fe0.26 K0.829 Mg1.78 Mn0.04 Na0.104 O30 Si10.08 Ti0.04P 6/m c c10.0999; 10.0999; 14.3355
90; 90; 120
1266.42Seryotkin, Y. V.; Sokol, E. V.; Bakakin, V. V.; Likhacheva, A. Y.
European Journal of Mineralogy, 2008, 20, 191-198
9010843 CIFBa0.01 Ca0.14 F0.17 Fe3.2 H4 K1.96 Mg2.05 Mn0.75 Na1.65 Nb0.03 O30 Si8 Ti1.97C 1 2/m 15.3327; 23.1535; 10.3775
90; 99.615; 90
1263.32Sokolova, E.; Camara, F.
Re-investigation of the crystal structure of magnesium astrophyllite
European Journal of Mineralogy, 2008, 20, 253-260
9010844 CIFAl1.986 Ca0.35 Ce0.914 Fe1.1 H Mn0.65 O13 Si3P 1 21/m 18.865; 5.717; 10.06
90; 114.52; 90
463.873Miyawaki, R.; Yokoyama, K.; Matsubara, S.; Tsutsumi, Y.; Goto, A.
Uedaite-(Ce), a new member of the epidote group with Mn at the A site, from Shodoshima, Kagawa Prefecture, Japan
European Journal of Mineralogy, 2008, 20, 261-269
9010845 CIFC H4 Ca3 O14 P2 Zn2C 1 2/c 119.045; 9.32; 6.525
90; 92.73; 90
1156.87Krause, W.; Effenberger, H.; Bernhardt, H.-J.; Medenbach, O.
Skorpionite, Ca3Zn2(PO4)2CO3(OH)2*H2O, a new mineral from Namibia: description and crystal structure Locality: near Rosh Pinah mine, Luderitz district, Karas region, Namibia, Africa
European Journal of Mineralogy, 2008, 20, 271-280
9010846 CIFBa1.275 Ca0.8 F2.745 Fe3.91 H2 K0.65 Mn4.09 Na1.15 Nb0.285 O35.255 Si8 Sr0.05 Ti3.585 Zr0.05C 1 2 110.723; 13.826; 20.791
90; 95; 90
3070.67Rastsvetaeva, R. K.; Eskova, E. M.; Dusmatov, V. D.; Chukanov, N. V.; Schneider, F.
Surkhobite: revalidation and redefinition with the new formula, (Ba,K)2CaNa(Mn,Fe2+,Fe3+)8Ti4(Si2O7)4O4(F,OH,O)6
European Journal of Mineralogy, 2008, 20, 289-295
9010847 CIFH12 K Mg O10 PP m n 216.892; 6.166; 11.139
90; 90; 90
473.364Graeser, S.; Postl, W.; Bojar, H. P.; Berlepsch, P.; Armbruster, T.; Raber, T.; Ettinger, K.; Walter, F.
Struvite-(K), KMgPO4*6H2O, the potassium equivalent of struvite - a new mineral Locality: Lengenbach, Switzerland
European Journal of Mineralogy, 2008, 20, 629-633
9010956 CIFAl0.86 Fe0.1 H Li0.08 Mg0.14 O10 Si3.9C 1 2/m 15.175; 8.896; 12.45
90; 99.69; 90
564.981Gournis, D.; Lappas, A.; Karakassides, M. A.; Tobbens, D.; Moukarika, A.
A neutron diffraction study of alkali cation migration in montmorillonites Sample: Li-mont
Physics and Chemistry of Minerals, 2008, 35, 49-58
9010957 CIFAl0.86 Cs0.08 Fe0.1 H Mg0.14 O10 Si3.9C 1 2/m 15.181; 8.945; 12.34
90; 99.62; 90
563.844Gournis, D.; Lappas, A.; Karakassides, M. A.; Tobbens, D.; Moukarika, A.
A neutron diffraction study of alkali cation migration in montmorillonites Sample: Cs-mont
Physics and Chemistry of Minerals, 2008, 35, 49-58
9010958 CIFAl0.86 Fe0.1 H Li0.08 Mg0.14 O10 Si3.9C 1 2/m 15.171; 8.957; 9.74
90; 96.1; 90
448.57Gournis, D.; Lappas, A.; Karakassides, M. A.; Tobbens, D.; Moukarika, A.
A neutron diffraction study of alkali cation migration in montmorillonites Sample: Li-mont-300
Physics and Chemistry of Minerals, 2008, 35, 49-58
9010959 CIFAl0.86 Cs0.08 Fe0.1 H Mg0.14 O10 Si3.9C 1 2/m 15.191; 8.976; 11.32
90; 100.56; 90
518.516Gournis, D.; Lappas, A.; Karakassides, M. A.; Tobbens, D.; Moukarika, A.
A neutron diffraction study of alkali cation migration in montmorillonites Sample: Cs-mont-300
Physics and Chemistry of Minerals, 2008, 35, 49-58
9010960 CIFAl2.126 Ca1.113 Ce0.349 Fe0.238 Gd0.018 H La0.202 Mg0.661 Nd0.197 O13 Pr0.059 Si3 Sm0.035P 1 21/m 18.899; 5.6836; 10.095
90; 114.729; 90
463.766Hoshino, M.; Kimata, M.; Nishida, N.; Shimizu, M.
Crystal chemical significance of chemical zoning in dissakisite-(Ce)
Physics and Chemistry of Minerals, 2008, 35, 59-70
9010961 CIFCa O3 PtC m c m3.12607; 9.91983; 7.35059
90; 90; 90
227.942Ohgushi, K.; Matsushita, Y.; Miyajima, N.; Katsuya, Y.; Tanaka, M.; Izumi, F.; Gotou, H.; Ueda, Y.; Yagi, T.
CaPtO3 as a novel post-perovskite oxide
Physics and Chemistry of Minerals, 2008, 35, 189-195
9010962 CIFD22 Mg O15 SP -16.7508; 6.8146; 17.2924
88.118; 89.481; 62.6891
706.446Fortes, A. D.; Wood, I. G.; Knight, K. S.
The crystal structure and thermal expansion tensor of MgSO4-11D2O (meridianiite) determined by neutron powder diffraction Locality: synthetic Sample: T = 250 K
Physics and Chemistry of Minerals, 2008, 35, 207-221
9010963 CIFD22 Mg O15 SP -16.7275; 6.7814; 17.318
88.206; 89.447; 62.608
701.142Fortes, A. D.; Wood, I. G.; Knight, K. S.
The crystal structure and thermal expansion tensor of MgSO4-11D2O (meridianiite) determined by neutron powder diffraction Locality: synthetic Sample: T = 4.2 K
Physics and Chemistry of Minerals, 2008, 35, 207-221
9010964 CIFAl H3 O3P 1 21/n 15.096; 8.729; 9.489
90; 90.26; 90
422.095Balan, E.; Blanchard, M.; Hochepied, J.-F.; Lazzeri, M.
Surface modes in the infrared spectrum of hydrous minerals: the OH stretching modes of bayerite Locality: synthetic
Physics and Chemistry of Minerals, 2008, 35, 279-285
9011399 CIFAs0.916 Cu2 H O5 P0.084P 21/n 1 18.5844; 8.2084; 5.9258
90.13; 90; 90
417.556Li, C.; Yang, H.; Downs, R. T.
Redetermination of olivenite from an untwinned single-crystal Note: RRUFF ID: R040181
Acta Crystallographica, Section E, 2008, 64, i60-i61
9011400 CIFAs2 Co0.61 Fe0.17 Ni0.22P n n m5.0669; 5.8739; 3.1346
90; 90; 90
93.293Yang, H.; Downs, R. T.; Eichler, C.
Safflorite, (Co,Ni,Fe)As2, isomorphous with marcasite
Acta Crystallographica, Section E, 2008, 64, i62-i62
9011401 CIFAs3 Ba5 Cl O12P 63/m10.557; 10.557; 7.73912
90; 90; 120
746.97Bell, A. M. T.; Henderson, C. M. B.; Wendlandt, R. F.; Harrison, W. J.
Rietveld refinement of Ba5(AsO4)3Cl from high-resolution synchrotron data
Acta Crystallographica, Section E, 2008, 64, i63-i64
9012666 CIFAl2 H4 O9 Si2C 1 c 18.91; 5.144; 14.593
90; 100.5; 90
657.642Zhukhlistov, A. P.
Crystal structure of nacrite from the electron diffraction data
Crystallography Reports, 2008, 53, 76-82
9012667 CIFCa8 Cl2 Mg O16 Si4P 115.1; 15.11; 15.092
90.06; 90.01; 89.93
3443.4Rastsvetaeva, R. K.; Zadov, A. E.; Chukanov, N. V.
Crystal structure of low-symmetry rondorfite
Crystallography Reports, 2008, 53, 199-205
9012668 CIFC2 B3.468 F2 Mg9 O58 Pb14.144 Si10.532P -19.3409; 9.3579; 18.8333
80.365; 75.816; 59.87
1378.47Yakubovich, O. V.; Massa, W.; Chukanov, N. V.
Crystal structure of britvinite [Pb7(OH)3F(BO3)2(CO3)][Mg4.5(OH)3(Si5O14)]: A new layered silicate with an original type of silicon-oxygen networks
Crystallography Reports, 2008, 53, 206-215
9012669 CIFAl7.08 B3 Ca0.62 F0.84 Fe0.66 H2.28 Li0.99 Mg0.24 Na0.32 O30.15 Si6 Ti0.03R 3 m :H15.894; 15.894; 7.115
90; 90; 120
1556.58Rozhdestvenskaya, I. V.; Bronzova, Y. M.; Frank-Kamenetskaya O V; Zolotarev, A. A.; Kuznetsova, L. G.; Bannova, I. I.
Refinement of the crystal structure of calcium-lithium-aluminum tourmaline from the pegmatite vein in the Sangilen Upland (Tuva Republic) Locality: Sangilen Upland, Tuva Republic
Crystallography Reports, 2008, 53, 223-227
9012670 CIFPt1.012 S0.988P 42/m m c3.471; 3.471; 6.1084
90; 90; 90
73.593Rozhdestvina, V. I.; Ivanov, A. V.; Zaremba, M. A.; Antsutkin, O. N.; Forsling, W.
Single-crystalline cooperite (PtS): Crystal-chemical characterization, ESR spectroscopy, and 195Pt NMR Spectroscopy Locality: Sea of Okhotsk region, Maimakansk zone, Far East
Crystallography Reports, 2008, 53, 391-397
9012671 CIFPt1.001 SP 42/m m c3.471; 3.471; 6.1084
90; 90; 90
73.593Rozhdestvina, V. I.; Ivanov, A. V.; Zaremba, M. A.; Antsutkin, O. N.; Forsling, W.
Single-crystalline cooperite (PtS): Crystal-chemical characterization, ESR spectroscopy, and 195Pt NMR Spectroscopy Locality: Sea of Okhotsk region, Maimakansk zone, Far East
Crystallography Reports, 2008, 53, 391-397
9012672 CIFPt0.997 S1.003P 42/m m c3.471; 3.471; 6.1084
90; 90; 90
73.593Rozhdestvina, V. I.; Ivanov, A. V.; Zaremba, M. A.; Antsutkin, O. N.; Forsling, W.
Single-crystalline cooperite (PtS): Crystal-chemical characterization, ESR spectroscopy, and 195Pt NMR Spectroscopy Locality: Sea of Okhotsk region, Maimakansk zone, Far East
Crystallography Reports, 2008, 53, 391-397
9012673 CIFFe0.001 Pt0.992 S1.007P 42/m m c3.471; 3.471; 6.1084
90; 90; 90
73.593Rozhdestvina, V. I.; Ivanov, A. V.; Zaremba, M. A.; Antsutkin, O. N.; Forsling, W.
Single-crystalline cooperite (PtS): Crystal-chemical characterization, ESR spectroscopy, and 195Pt NMR Spectroscopy Locality: Sea of Okhotsk region, Maimakansk zone, Far East
Crystallography Reports, 2008, 53, 391-397
9012674 CIFFe0.001 Pt0.989 S1.01P 42/m m c3.471; 3.471; 6.1084
90; 90; 90
73.593Rozhdestvina, V. I.; Ivanov, A. V.; Zaremba, M. A.; Antsutkin, O. N.; Forsling, W.
Single-crystalline cooperite (PtS): Crystal-chemical characterization, ESR spectroscopy, and 195Pt NMR Spectroscopy Locality: Sea of Okhotsk region, Maimakansk zone, Far East
Crystallography Reports, 2008, 53, 391-397
9012675 CIFPt0.982 S1.018P 42/m m c3.471; 3.471; 6.1084
90; 90; 90
73.593Rozhdestvina, V. I.; Ivanov, A. V.; Zaremba, M. A.; Antsutkin, O. N.; Forsling, W.
Single-crystalline cooperite (PtS): Crystal-chemical characterization, ESR spectroscopy, and 195Pt NMR Spectroscopy Locality: Sea of Okhotsk region, Maimakansk zone, Far East
Crystallography Reports, 2008, 53, 391-397
9012676 CIFFe0.001 Pt0.98 S1.019P 42/m m c3.471; 3.471; 6.1084
90; 90; 90
73.593Rozhdestvina, V. I.; Ivanov, A. V.; Zaremba, M. A.; Antsutkin, O. N.; Forsling, W.
Single-crystalline cooperite (PtS): Crystal-chemical characterization, ESR spectroscopy, and 195Pt NMR Spectroscopy Locality: Sea of Okhotsk region, Maimakansk zone, Far East
Crystallography Reports, 2008, 53, 391-397
9012677 CIFFe0.001 Pt0.974 S1.025P 42/m m c3.471; 3.471; 6.1084
90; 90; 90
73.593Rozhdestvina, V. I.; Ivanov, A. V.; Zaremba, M. A.; Antsutkin, O. N.; Forsling, W.
Single-crystalline cooperite (PtS): Crystal-chemical characterization, ESR spectroscopy, and 195Pt NMR Spectroscopy Locality: Sea of Okhotsk region, Maimakansk zone, Far East
Crystallography Reports, 2008, 53, 391-397
9012678 CIFFe0.001 Pt0.97 S1.029P 42/m m c3.471; 3.471; 6.1084
90; 90; 90
73.593Rozhdestvina, V. I.; Ivanov, A. V.; Zaremba, M. A.; Antsutkin, O. N.; Forsling, W.
Single-crystalline cooperite (PtS): Crystal-chemical characterization, ESR spectroscopy, and 195Pt NMR Spectroscopy Locality: Sea of Okhotsk region, Maimakansk zone, Far East
Crystallography Reports, 2008, 53, 391-397
9012679 CIFFe0.002 Pt0.964 S1.034P 42/m m c3.471; 3.471; 6.1084
90; 90; 90
73.593Rozhdestvina, V. I.; Ivanov, A. V.; Zaremba, M. A.; Antsutkin, O. N.; Forsling, W.
Single-crystalline cooperite (PtS): Crystal-chemical characterization, ESR spectroscopy, and 195Pt NMR Spectroscopy Locality: Sea of Okhotsk region, Maimakansk zone, Far East
Crystallography Reports, 2008, 53, 391-397
9012680 CIFFe0.001 Pt0.954 S1.045P 42/m m c3.471; 3.471; 6.1084
90; 90; 90
73.593Rozhdestvina, V. I.; Ivanov, A. V.; Zaremba, M. A.; Antsutkin, O. N.; Forsling, W.
Single-crystalline cooperite (PtS): Crystal-chemical characterization, ESR spectroscopy, and 195Pt NMR Spectroscopy Locality: Sea of Okhotsk region, Maimakansk zone, Far East
Crystallography Reports, 2008, 53, 391-397
9012681 CIFCa2 O4 SiP b n m5.07389; 11.21128; 6.7534
90; 90; 90
384.166Gobechiya, E. R.; Yamnova, N. A.; Zadov, A. E.; Gazeev, V. M.
Calcio-olivine gamma-Ca2SiO4: I. Rietveld refinement of the crystal structure
Crystallography Reports, 2008, 53, 404-408
9012682 CIFBa1.44 Ca0.76 F2 Fe6 H8 K0.8 Mg0.5 Mn1.5 Na Nb0.2 O38 Si8 Ti3.6 Zr0.2P 1 2/m 15.35; 6.909; 20.96
90; 99.83; 90
763.373Rastsvetaeva, R. K.; Chukanov, N. V.; Rozenberg, K.
A crystal structure of jinshajiangite from the Norra Karr complex (Sweden)
Crystallography Reports, 2008, 53, 553-556
9012683 CIFAs0.66 Fe0.19 H20 Mg0.81 O22 P1.34 U2P 1 21/n 16.952; 19.865; 6.969
90; 90.806; 90
962.334Yakubovich, O. V.; Steele, I. M.; Atencio, D.; Menezes, L. A.; Chukanov, N. V.
Crystal structure of the (Mg,Fe)[UO2(P,As)O4]2*10H2O solid solution- a novel mineral variety of saleeite
Crystallography Reports, 2008, 53, 764-770
9012684 CIFAs1.22 H12.72 N1.15 Na0.09 O18 P0.78 U2P 17.173; 7.167; 9.3
90.13; 90.09; 89.96
478.101Rastsvetaeva, R. K.; Sidorenko, G. A.; Ivanova, A. G.; Chukanov, N. V.
Structural model of uramarsite
Crystallography Reports, 2008, 53, 771-774
9012756 CIFAl5 H O8C m c 215.6152; 9.7264; 8.8241
90; 90; 90
481.934Demichelis, R.; Noel, Y.; Zicovich-Wilson C M; Roetti, C.; Valenzano, L.; Dovesi, R.
Ab-initio quantum mechanical study of akdalaite (5Al2O3*H2O): Structure and vibrational spectrum,
Journal of Physics: Conference Series, 2008, 117, 012013-012013
9012757 CIFAl5 H O8P 3 1 c5.6153; 5.6153; 8.8249
90; 90; 120
240.983Demichelis, R.; Noel, Y.; Zicovich-Wilson C M; Roetti, C.; Valenzano, L.; Dovesi, R.
Ab-initio quantum mechanical study of akdalaite (5Al2O3*H2O): Structure and vibrational spectrum,
Journal of Physics: Conference Series, 2008, 117, 012013-012013
9012758 CIFAl5 H O8P 63 m c5.6153; 5.6153; 8.8247
90; 90; 120
240.978Demichelis, R.; Noel, Y.; Zicovich-Wilson C M; Roetti, C.; Valenzano, L.; Dovesi, R.
Ab-initio quantum mechanical study of akdalaite (5Al2O3*H2O): Structure and vibrational spectrum,
Journal of Physics: Conference Series, 2008, 117, 012013-012013
9012854 CIFAs6 Cu5 H18 Na O34 Sb0.96 Ti1.04P -17.0308; 9.8823; 10.6754
106.973; 104.274; 93.839
679.756Hawthorne, F. C.; Cooper, M. A.; Paar, W. H.
The crystal structure of braithwaiteite
Journal of Coordination Chemistry, 2008, 61, 15-29
9013163 CIFAl2 Na2 O10 Si3C 1 2 1 (a+2*c,a,b)16.167; 16.938; 6.438
90; 90; 89.68
1762.93Wang, H.; Bish, D. L.
A PH2O-dependent structural phase transition in the zeolite natrolite Sample: alpha1-metanatrolite at 400 C, 0.15 mbar
American Mineralogist, 2008, 93, 1191-1194
9013164 CIFCa H4 O6 SC 1 2/c 16.277; 15.181; 5.672
90; 114.11; 90
493.34Comodi, P.; Nazzareni, S.; Zanazzi, P. F.; Speziale, S.
High-pressure behavior of gypsum: A single-crystal X-ray study Note: P = 0.0001 GPa
American Mineralogist, 2008, 93, 1530-1537
9013165 CIFCa H4 O6 SC 1 2/c 16.282; 15.175; 5.673
90; 114.13; 90
493.548Comodi, P.; Nazzareni, S.; Zanazzi, P. F.; Speziale, S.
High-pressure behavior of gypsum: A single-crystal X-ray study Locality: Valle di Caramanico, Abruzzo, Italy Note: P = 0.25 GPa
American Mineralogist, 2008, 93, 1530-1537
9013166 CIFCa H4 O6 SC 1 2/c 16.269; 15.14; 5.665
90; 114.1; 90
490.813Comodi, P.; Nazzareni, S.; Zanazzi, P. F.; Speziale, S.
High-pressure behavior of gypsum: A single-crystal X-ray study Locality: Valle di Caramanico, Abruzzo, Italy Note: P = 0.33 GPa
American Mineralogist, 2008, 93, 1530-1537
9013167 CIFCa H4 O6 SC 1 2/c 16.263; 15.163; 5.662
90; 114.24; 90
490.29Comodi, P.; Nazzareni, S.; Zanazzi, P. F.; Speziale, S.
High-pressure behavior of gypsum: A single-crystal X-ray study Locality: Valle di Caramanico, Abruzzo, Italy Note: P = 0.56 GPa
American Mineralogist, 2008, 93, 1530-1537
9013168 CIFCa H4 O6 SC 1 2/c 16.241; 15.13; 5.645
90; 114.42; 90
485.351Comodi, P.; Nazzareni, S.; Zanazzi, P. F.; Speziale, S.
High-pressure behavior of gypsum: A single-crystal X-ray study Locality: Valle di Caramanico, Abruzzo, Italy Note: P = 1.01 GPa
American Mineralogist, 2008, 93, 1530-1537
9013169 CIFCa H4 O6 SC 1 2/c 16.2; 15.01; 5.61
90; 114.86; 90
473.701Comodi, P.; Nazzareni, S.; Zanazzi, P. F.; Speziale, S.
High-pressure behavior of gypsum: A single-crystal X-ray study Locality: Valle di Caramanico, Abruzzo, Italy Note: P = 2.03 GPa
American Mineralogist, 2008, 93, 1530-1537
9013170 CIFCa H4 O6 SC 1 2/c 16.162; 14.965; 5.58
90; 115.38; 90
464.894Comodi, P.; Nazzareni, S.; Zanazzi, P. F.; Speziale, S.
High-pressure behavior of gypsum: A single-crystal X-ray study Locality: Valle di Caramanico, Abruzzo, Italy Note: P = 3.15 GPa
American Mineralogist, 2008, 93, 1530-1537
9013171 CIFCa H4 O6 SC 1 2/c 16.136; 14.912; 5.556
90; 115.73; 90
457.969Comodi, P.; Nazzareni, S.; Zanazzi, P. F.; Speziale, S.
High-pressure behavior of gypsum: A single-crystal X-ray study Locality: Valle di Caramanico, Abruzzo, Italy Note: P = 3.94 GPa
American Mineralogist, 2008, 93, 1530-1537
9013172 CIFBe Ca F0.776 H0.224 O4.224 PP 1 21/a 19.7446; 7.6769; 4.7633
90; 90.667; 90
356.31Harlow, G. E.; Hawthorne, F. C.
Herderite from Mogok, Myanmar, and comparison with hydroxyl-herderite from Ehrenfriedersdorf, Germany Note: 108370
American Mineralogist, 2008, 93, 1545-1549
9013173 CIFBe Ca F0.515 H0.485 O4.485 PP 1 21/a 19.7615; 7.668; 4.7853
90; 90.184; 90
358.184Harlow, G. E.; Hawthorne, F. C.
Herderite from Mogok, Myanmar, and comparison with hydroxyl-herderite from Ehrenfriedersdorf, Germany Locality: Sauberg mine, Morgenrother Zug, Ehrenfriedersdorf, Germany Note: 20517 Note: Occupancies derived from X-ray diffraction analysis
American Mineralogist, 2008, 93, 1545-1549
9013174 CIFBe Ca F0.48 H0.52 O4.52 PP 1 21/a 19.7615; 7.668; 4.7853
90; 90.184; 90
358.184Harlow, G. E.; Hawthorne, F. C.
Herderite from Mogok, Myanmar, and comparison with hydroxyl-herderite from Ehrenfriedersdorf, Germany Locality: Sauberg mine, Morgenrother Zug, Ehrenfriedersdorf, Germany Note: 20517 Note: Occupancies derived from electron-microprobe analysis
American Mineralogist, 2008, 93, 1545-1549
9013175 CIFAl D0.744 H0.256 O2P 21 n m4.7179; 4.2361; 2.8323
90; 90; 90
56.605Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 0.0001 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013176 CIFAl D0.744 H0.256 O2P 21 n m4.7112; 4.2284; 2.8296
90; 90; 90
56.368Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 0.6 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013177 CIFAl D0.744 H0.256 O2P 21 n m4.6969; 4.2133; 2.8243
90; 90; 90
55.891Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 2.0 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013178 CIFAl D0.744 H0.256 O2P 21 n m4.6827; 4.1962; 2.8181
90; 90; 90
55.374Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 3.5 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013179 CIFAl D0.744 H0.256 O2P 21 n m4.6706; 4.1836; 2.8129
90; 90; 90
54.964Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 4.7 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013180 CIFAl D0.744 H0.256 O2P 21 n m4.6601; 4.1711; 2.8076
90; 90; 90
54.573Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 6.0 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013181 CIFAl D0.744 H0.256 O2P 21 n m4.6506; 4.161; 2.8033
90; 90; 90
54.247Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 7.0 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013182 CIFAl D0.744 H0.256 O2P 21 n m4.6432; 4.1529; 2.8
90; 90; 90
53.992Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 7. 9 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013183 CIFAl D0.744 H0.256 O2P 21 n m4.6393; 4.1477; 2.7978
90; 90; 90
53.836Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 8.4 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013184 CIFAl D0.744 H0.256 O2P 21 n m4.6357; 4.1434; 2.7961
90; 90; 90
53.706Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 8.9 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013185 CIFAl D0.744 H0.256 O2P 21 n m4.6328; 4.1401; 2.7947
90; 90; 90
53.603Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 9.2 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013186 CIFAl0.99 Fe0.009 K0.948 Na0.026 O6 Si2.001I 41/a :213.084; 13.084; 13.784
90; 90; 90
2359.7Gatta, G. D.; Rotiroti, N.; Ballaran, T. B.; Pavese, A.
Leucite at high pressure: Elastic behavior, phase stability, and petrological implications Locality: Sabatini volcanic district, Lazium, Italy Note: P = 0.0001 GPa in air
American Mineralogist, 2008, 93, 1588-1596
9013187 CIFAl0.99 Fe0.009 K0.948 Na0.026 O6 Si2.001I 41/a :213.097; 13.097; 13.755
90; 90; 90
2359.42Gatta, G. D.; Rotiroti, N.; Ballaran, T. B.; Pavese, A.
Leucite at high pressure: Elastic behavior, phase stability, and petrological implications Note: P = 0.0001 GPa in diamond cell
American Mineralogist, 2008, 93, 1588-1596
9013188 CIFAl0.99 Fe0.009 K0.948 Na0.026 O6 Si2.001I 41/a :213.053; 13.053; 13.732
90; 90; 90
2339.67Gatta, G. D.; Rotiroti, N.; Ballaran, T. B.; Pavese, A.
Leucite at high pressure: Elastic behavior, phase stability, and petrological implications Note: P = 0.38 GPa
American Mineralogist, 2008, 93, 1588-1596
9013189 CIFAl0.99 Fe0.009 K0.948 Na0.026 O6 Si2.001I 41/a :212.955; 12.955; 13.684
90; 90; 90
2296.61Gatta, G. D.; Rotiroti, N.; Ballaran, T. B.; Pavese, A.
Leucite at high pressure: Elastic behavior, phase stability, and petrological implications Note: P = 1.20 GPa
American Mineralogist, 2008, 93, 1588-1596
9013190 CIFAl0.99 Fe0.009 K0.948 Na0.026 O6 Si2.001I 41/a :212.891; 12.891; 13.653
90; 90; 90
2268.83Gatta, G. D.; Rotiroti, N.; Ballaran, T. B.; Pavese, A.
Leucite at high pressure: Elastic behavior, phase stability, and petrological implications Note: P = 1.77 GPa
American Mineralogist, 2008, 93, 1588-1596
9013191 CIFAl0.99 Fe0.009 K0.948 Na0.026 O6 Si2.001I 41/a :213.073; 13.073; 13.731
90; 90; 90
2346.67Gatta, G. D.; Rotiroti, N.; Ballaran, T. B.; Pavese, A.
Leucite at high pressure: Elastic behavior, phase stability, and petrological implications Note: P = .0001 GPa in air after decompression
American Mineralogist, 2008, 93, 1588-1596
9013192 CIFBi0.99 Br0.67 Cl0.35 I0.02 S0.97P n a m8.0424; 9.8511; 4.0328
90; 90; 90
319.505Demartin, F.; Gramaccioli, C. M.; Campostrini, I.; Orlandi, P.
Demicheleite, BiSBr, a new mineral from La Fossa crater, Vulcano, Aeolian Islands, Italy
American Mineralogist, 2008, 93, 1603-1607
9013193 CIFAl5.28 B3 Ca0.29 F0.08 Fe1.449 H3.54 K0.01 Mg2.241 Mn0.021 Na0.64 O30.92 Si6 Ti0.009R 3 m :H15.9875; 15.9875; 7.2372
90; 90; 120
1602Bosi, F.
Disordering of Fe2+ over octahedrally coordinated sites of tourmaline
American Mineralogist, 2008, 93, 1647-1653
9013194 CIFBr Cl2 Hg12 O6 SbP 313.56; 13.56; 10.004
90; 90; 120
1593.03Pervukhina, N. V.; Borisov, S. V.; Magarill, S. A.; Naumov, D. Y.; Vasilev, V. I.
The crystal structure of kelyanite (Hg2)6(SbO6)BrCl2
American Mineralogist, 2008, 93, 1666-1669
9013195 CIFMg OF m -3 m4.144; 4.144; 4.144
90; 90; 90
71.164Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 8.5 GPa using ruby-scale Note: P = 8.5 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013196 CIFMg OF m -3 m4.118; 4.118; 4.118
90; 90; 90
69.833Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 12.2 GPa using ruby-scale Note: P = 12.4 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013197 CIFMg OF m -3 m4.097; 4.097; 4.097
90; 90; 90
68.77Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 15.3 GPa using ruby-scale Note: P = 15.7 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013198 CIFMg OF m -3 m4.08; 4.08; 4.08
90; 90; 90
67.917Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 18.2 GPa using ruby-scale Note: P = 18.5 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013199 CIFMg OF m -3 m4.051; 4.051; 4.051
90; 90; 90
66.479Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 23.4 GPa using ruby-scale Note: P = 23.6 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013200 CIFMg OF m -3 m4.026; 4.026; 4.026
90; 90; 90
65.256Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 28.1 GPa using ruby-scale Note: P = 28.3 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013201 CIFMg OF m -3 m4.017; 4.017; 4.017
90; 90; 90
64.819Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 29.9 GPa using ruby-scale Note: P = 30.3 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013202 CIFMg OF m -3 m3.992; 3.992; 3.992
90; 90; 90
63.617Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 34.5 GPa using ruby-scale Note: P = 35.5 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013203 CIFMg OF m -3 m3.977; 3.977; 3.977
90; 90; 90
62.902Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 37.6 GPa using ruby-scale Note: P = 39.1 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013204 CIFMg OF m -3 m3.964; 3.964; 3.964
90; 90; 90
62.288Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 40.4 GPa using ruby-scale Note: P = 42.0 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013205 CIFMg OF m -3 m3.952; 3.952; 3.952
90; 90; 90
61.724Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 42.9 GPa using ruby-scale Note: P = 44.8 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013206 CIFMg OF m -3 m3.937; 3.937; 3.937
90; 90; 90
61.023Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 46.9 GPa using ruby-scale Note: P = 48.7 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013207 CIFMg OF m -3 m3.924; 3.924; 3.924
90; 90; 90
60.421Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 49.7 GPa using ruby-scale Note: P = 52.1 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013208 CIFMg OF m -3 m3.913; 3.913; 3.913
90; 90; 90
59.914Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 53.0 GPa using ruby-scale Note: P = 55.1 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013209 CIFMg OF m -3 m3.902; 3.902; 3.902
90; 90; 90
59.41Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 56.1 GPa using ruby-scale Note: P = 58.1 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013210 CIFMg OF m -3 m3.89; 3.89; 3.89
90; 90; 90
58.864Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 59.5 GPa using ruby-scale Note: P = 61.7 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013211 CIFMg OF m -3 m3.878; 3.878; 3.878
90; 90; 90
58.321Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 62.8 GPa using ruby-scale Note: P = 65.3 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013212 CIFMg OF m -3 m3.869; 3.869; 3.869
90; 90; 90
57.916Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 65.6 GPa using ruby-scale Note: P = 68.2 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013213 CIFMg OF m -3 m3.859; 3.859; 3.859
90; 90; 90
57.468Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 68.3 GPa using ruby-scale Note: P = 71.3 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013214 CIFMg OF m -3 m4.158; 4.158; 4.158
90; 90; 90
71.888Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 6.5 GPa using ruby-scale Note: P = 6.6 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013215 CIFMg OF m -3 m4.144; 4.144; 4.144
90; 90; 90
71.164Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 8.4 GPa using ruby-scale Note: P = 8.6 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013216 CIFMg OF m -3 m4.123; 4.123; 4.123
90; 90; 90
70.087Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 11.5 GPa using ruby-scale Note: P = 11.7 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013217 CIFMg OF m -3 m4.111; 4.111; 4.111
90; 90; 90
69.477Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 13.3 GPa using ruby-scale Note: P = 13.5 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013218 CIFMg OF m -3 m4.078; 4.078; 4.078
90; 90; 90
67.817Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 18.6 GPa using ruby-scale Note: P = 18.9 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013219 CIFMg OF m -3 m4.055; 4.055; 4.055
90; 90; 90
66.676Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 22.6 GPa using ruby-scale Note: P = 23.0 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013220 CIFMg OF m -3 m4.029; 4.029; 4.029
90; 90; 90
65.402Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 27.4 GPa using ruby-scale Note: P = 27.8 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013221 CIFMg OF m -3 m4.175; 4.175; 4.175
90; 90; 90
72.773Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 4.3 GPa using ruby-scale Note: P = 4.4 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013222 CIFMg OF m -3 m4.145; 4.145; 4.145
90; 90; 90
71.215Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 7.9 GPa using ruby-scale Note: P = 8.4 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013223 CIFMg OF m -3 m4.119; 4.119; 4.119
90; 90; 90
69.884Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 11.6 GPa using ruby-scale Note: P = 12.1 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013224 CIFMg OF m -3 m4.081; 4.081; 4.081
90; 90; 90
67.967Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 17.8 GPa using ruby-scale Note: P = 18.3 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013225 CIFMg OF m -3 m4.047; 4.047; 4.047
90; 90; 90
66.283Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 23.9 GPa using ruby-scale Note: P = 24.4 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013226 CIFMg OF m -3 m4.011; 4.011; 4.011
90; 90; 90
64.529Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 30.6 GPa using ruby-scale Note: P = 31.5 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013227 CIFMg OF m -3 m3.983; 3.983; 3.983
90; 90; 90
63.187Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 36.5 GPa using ruby-scale Note: P = 37.6 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013228 CIFMg OF m -3 m3.967; 3.967; 3.967
90; 90; 90
62.429Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 40.1 GPa using ruby-scale Note: P = 41.4 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013229 CIFMg OF m -3 m3.948; 3.948; 3.948
90; 90; 90
61.536Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 43.7 GPa using ruby-scale Note: P = 45.9 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013230 CIFMg OF m -3 m3.937; 3.937; 3.937
90; 90; 90
61.023Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 46.8 GPa using ruby-scale Note: P = 48.7 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013231 CIFMg OF m -3 m3.92; 3.92; 3.92
90; 90; 90
60.236Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 51.0 GPa using ruby-scale Note: P = 53.2 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013232 CIFMg OF m -3 m3.906; 3.906; 3.906
90; 90; 90
59.593Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 55.3 GPa using ruby-scale Note: P = 57.1 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013233 CIFMg OF m -3 m3.895; 3.895; 3.895
90; 90; 90
59.091Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 58.4 GPa using ruby-scale Note: P = 60.3 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013234 CIFMg OF m -3 m3.878; 3.878; 3.878
90; 90; 90
58.321Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 62.9 GPa using ruby-scale Note: P = 65.3 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013235 CIFMg OF m -3 m3.865; 3.865; 3.865
90; 90; 90
57.736Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 66.5 GPa using ruby-scale Note: P = 69.4 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013236 CIFMg OF m -3 m3.855; 3.855; 3.855
90; 90; 90
57.289Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 69.6 GPa using ruby-scale Note: P = 72.8 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013237 CIFMg OF m -3 m3.837; 3.837; 3.837
90; 90; 90
56.49Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 74.6 GPa using ruby-scale Note: P = 78.9 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013238 CIFMg OF m -3 m3.822; 3.822; 3.822
90; 90; 90
55.831Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 80.0 GPa using ruby-scale Note: P = 84.0 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013239 CIFMg OF m -3 m3.805; 3.805; 3.805
90; 90; 90
55.089Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 85.0 GPa using ruby-scale Note: P = 90.1 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013240 CIFMg OF m -3 m3.794; 3.794; 3.794
90; 90; 90
54.612Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 89.0 GPa using ruby-scale Note: P = 94.4 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013241 CIFMg OF m -3 m3.773; 3.773; 3.773
90; 90; 90
53.711Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 96.2 GPa using ruby-scale Note: P = 102.9 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013242 CIFMg OF m -3 m3.765; 3.765; 3.765
90; 90; 90
53.37Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 99.6 GPa using ruby-scale Note: P = 106.4 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013243 CIFMg OF m -3 m3.758; 3.758; 3.758
90; 90; 90
53.073Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 102.4 GPa using ruby-scale Note: P = 109.4 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013244 CIFMg OF m -3 m3.748; 3.748; 3.748
90; 90; 90
52.65Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 106.3 GPa using ruby-scale Note: P = 113.8 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013245 CIFMg OF m -3 m3.738; 3.738; 3.738
90; 90; 90
52.23Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 111.0 GPa using ruby-scale Note: P = 118.1 GPa using MgO-scale
American Mineralogist, 2008, 93, 1823-1828
9013246 CIFMg OF m -3 m4.181; 4.181; 4.181
90; 90; 90
73.087Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 3.6 GPa
American Mineralogist, 2008, 93, 1823-1828
9013247 CIFMg OF m -3 m4.156; 4.156; 4.156
90; 90; 90
71.784Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 7.4 GPa
American Mineralogist, 2008, 93, 1823-1828
9013248 CIFMg OF m -3 m4.133; 4.133; 4.133
90; 90; 90
70.599Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 10.6 GPa
American Mineralogist, 2008, 93, 1823-1828
9013249 CIFMg OF m -3 m4.114; 4.114; 4.114
90; 90; 90
69.629Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 13.5 GPa
American Mineralogist, 2008, 93, 1823-1828
9013250 CIFMg OF m -3 m4.096; 4.096; 4.096
90; 90; 90
68.719Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 16.2 GPa
American Mineralogist, 2008, 93, 1823-1828
9013251 CIFMg OF m -3 m4.079; 4.079; 4.079
90; 90; 90
67.867Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 18.9 GPa
American Mineralogist, 2008, 93, 1823-1828
9013252 CIFMg OF m -3 m4.058; 4.058; 4.058
90; 90; 90
66.825Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 22.8 GPa
American Mineralogist, 2008, 93, 1823-1828
9013253 CIFMg OF m -3 m4.037; 4.037; 4.037
90; 90; 90
65.792Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 26.9 GPa
American Mineralogist, 2008, 93, 1823-1828
9013254 CIFMg OF m -3 m4.015; 4.015; 4.015
90; 90; 90
64.723Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 31.1 GPa
American Mineralogist, 2008, 93, 1823-1828
9013255 CIFMg OF m -3 m3.991; 3.991; 3.991
90; 90; 90
63.569Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 36.6 GPa
American Mineralogist, 2008, 93, 1823-1828
9013256 CIFMg OF m -3 m3.97; 3.97; 3.97
90; 90; 90
62.571Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 41.4 GPa
American Mineralogist, 2008, 93, 1823-1828
9013257 CIFMg OF m -3 m3.942; 3.942; 3.942
90; 90; 90
61.256Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 49.1 GPa
American Mineralogist, 2008, 93, 1823-1828
9013258 CIFMg OF m -3 m3.93; 3.93; 3.93
90; 90; 90
60.698Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 52.2 GPa
American Mineralogist, 2008, 93, 1823-1828
9013259 CIFMg OF m -3 m3.926; 3.926; 3.926
90; 90; 90
60.513Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 53.5 GPa
American Mineralogist, 2008, 93, 1823-1828
9013260 CIFMg OF m -3 m3.916; 3.916; 3.916
90; 90; 90
60.052Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 55.9 GPa
American Mineralogist, 2008, 93, 1823-1828
9013261 CIFMg OF m -3 m3.907; 3.907; 3.907
90; 90; 90
59.639Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 58.1 GPa
American Mineralogist, 2008, 93, 1823-1828
9013262 CIFMg OF m -3 m3.899; 3.899; 3.899
90; 90; 90
59.273Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 61.1 GPa
American Mineralogist, 2008, 93, 1823-1828
9013263 CIFMg OF m -3 m3.889; 3.889; 3.889
90; 90; 90
58.818Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 63.5 GPa
American Mineralogist, 2008, 93, 1823-1828
9013264 CIFMg OF m -3 m3.882; 3.882; 3.882
90; 90; 90
58.501Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 65.9 GPa
American Mineralogist, 2008, 93, 1823-1828
9013265 CIFMg OF m -3 m3.876; 3.876; 3.876
90; 90; 90
58.231Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 68.7 GPa
American Mineralogist, 2008, 93, 1823-1828
9013266 CIFMg OF m -3 m3.865; 3.865; 3.865
90; 90; 90
57.736Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 71.2 GPa
American Mineralogist, 2008, 93, 1823-1828
9013267 CIFMg OF m -3 m3.856; 3.856; 3.856
90; 90; 90
57.334Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 73.9 GPa
American Mineralogist, 2008, 93, 1823-1828
9013268 CIFMg OF m -3 m3.851; 3.851; 3.851
90; 90; 90
57.111Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 76.2 GPa
American Mineralogist, 2008, 93, 1823-1828
9013269 CIFMg OF m -3 m3.84; 3.84; 3.84
90; 90; 90
56.623Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 80.1 GPa
American Mineralogist, 2008, 93, 1823-1828
9013270 CIFMg OF m -3 m3.828; 3.828; 3.828
90; 90; 90
56.094Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 83.5 GPa
American Mineralogist, 2008, 93, 1823-1828
9013271 CIFMg OF m -3 m3.821; 3.821; 3.821
90; 90; 90
55.787Jacobsen, S. D.; Holl, C. M.; Adams, K. A.; Fischer, R. A.; Martin, E. S.; Bina, C. R.; Lin, J. F.; Prakapenka, V. B.; Kubo, A.; Dera, P.
Compression of single-crystal magnesium oxide to 118 GPa and a ruby pressure gauge for helium pressure media Note: P = 86.6 GPa
American Mineralogist, 2008, 93, 1823-1828
9013272 CIFFe Na O6 Si2C 1 2/c 19.6539; 8.7928; 5.2935
90; 107.436; 90
428.692McCarthy, A. C.; Downs, R. T.; Thompson, R. M.; Redhammer, G. J.
In situ high-pressure single-crystal X-ray study of aegirine, NaFe3+Si2O6, and the role of M1 size in clinopyroxene compressibility Note: Pressure = 0.0001 GPa
American Mineralogist, 2008, 93, 1829-1837
9013273 CIFFe Na O6 Si2C 1 2/c 19.6067; 8.7501; 5.2698
90; 107.258; 90
423.034McCarthy, A. C.; Downs, R. T.; Thompson, R. M.; Redhammer, G. J.
In situ high-pressure single-crystal X-ray study of aegirine, NaFe3+Si2O6, and the role of M1 size in clinopyroxene compressibility Note: Pressure = 1.78 GPa
American Mineralogist, 2008, 93, 1829-1837
9013274 CIFFe Na O6 Si2C 1 2/c 19.5667; 8.7128; 5.2484
90; 107.095; 90
418.141McCarthy, A. C.; Downs, R. T.; Thompson, R. M.; Redhammer, G. J.
In situ high-pressure single-crystal X-ray study of aegirine, NaFe3+Si2O6, and the role of M1 size in clinopyroxene compressibility Note: Pressure = 3.35 GPa
American Mineralogist, 2008, 93, 1829-1837
9013275 CIFFe Na O6 Si2C 1 2/c 19.5148; 8.6568; 5.2188
90; 106.844; 90
411.418McCarthy, A. C.; Downs, R. T.; Thompson, R. M.; Redhammer, G. J.
In situ high-pressure single-crystal X-ray study of aegirine, NaFe3+Si2O6, and the role of M1 size in clinopyroxene compressibility Note: Pressure = 5.47 GPa
American Mineralogist, 2008, 93, 1829-1837
9013276 CIFFe Na O6 Si2C 1 2/c 19.4711; 8.6068; 5.1915
90; 106.633; 90
405.482McCarthy, A. C.; Downs, R. T.; Thompson, R. M.; Redhammer, G. J.
In situ high-pressure single-crystal X-ray study of aegirine, NaFe3+Si2O6, and the role of M1 size in clinopyroxene compressibility Note: Pressure = 7.3 GPa
American Mineralogist, 2008, 93, 1829-1837
9013277 CIFFe Na O6 Si2C 1 2/c 19.4426; 8.5727; 5.174
90; 106.482; 90
401.618McCarthy, A. C.; Downs, R. T.; Thompson, R. M.; Redhammer, G. J.
In situ high-pressure single-crystal X-ray study of aegirine, NaFe3+Si2O6, and the role of M1 size in clinopyroxene compressibility Note: Pressure = 8.63 GPa
American Mineralogist, 2008, 93, 1829-1837
9013278 CIFFe Na O6 Si2C 1 2/c 19.422; 8.548; 5.1597
90; 106.371; 90
398.71McCarthy, A. C.; Downs, R. T.; Thompson, R. M.; Redhammer, G. J.
In situ high-pressure single-crystal X-ray study of aegirine, NaFe3+Si2O6, and the role of M1 size in clinopyroxene compressibility Note: Pressure = 9.76 GPa
American Mineralogist, 2008, 93, 1829-1837
9013279 CIFFe Na O6 Si2C 1 2/c 19.4038; 8.5221; 5.1465
90; 106.256; 90
395.952McCarthy, A. C.; Downs, R. T.; Thompson, R. M.; Redhammer, G. J.
In situ high-pressure single-crystal X-ray study of aegirine, NaFe3+Si2O6, and the role of M1 size in clinopyroxene compressibility Note: Pressure = 10.82 GPa
American Mineralogist, 2008, 93, 1829-1837
9013280 CIFAl0.27 Ca2 Cu0.03 H3 Mg0.09 Mn2.511 O14 Si3 V0.009P 1 21/m 18.959; 6.072; 10.218
90; 110.75; 90
519.794Nagashima, M.; Rahmoun, N. S.; Alekseev, E. V.; Geiger, C. A.; Armbruster, T.; Akasaka, M.
Crystal chemistry of macfallite: Relationships to sursassite and pumpellyite
American Mineralogist, 2008, 93, 1851-1857
9013281 CIFCa Fe2 O4P n a m8.376; 9.551; 8.353
90; 90; 90
668.233Yamanaka, T.; Uchida, A.; Nakamoto, Y.
Structural transition of post-spinel phases CaMn2O4, CaFe2O4, and CaTi2O4 under high pressures up to 80 GPa Note: Pressure = 63.3 GPa
American Mineralogist, 2008, 93, 1874-1881
9013282 CIFCa O4 Ti2B b m m9.086; 9.335; 8.585
90; 90; 90
728.161Yamanaka, T.; Uchida, A.; Nakamoto, Y.
Structural transition of post-spinel phases CaMn2O4, CaFe2O4, and CaTi2O4 under high pressures up to 80 GPa Note: Pressure = 80 GPa
American Mineralogist, 2008, 93, 1874-1881
9013283 CIFFe0.015 Mg0.58 Mn6.405 O21 Si7C -19.663; 10.457; 17.36
112.28; 103.13; 82.88
1579.37Zanazzi, P. F.; Nestola, F.; Nazzareni, S.; Comodi, P.
Pyroxmangite: A high pressure single-crystal study Note: Pressure = 0.0001 GPa
American Mineralogist, 2008, 93, 1921-1928
9013284 CIFFe0.015 Mg0.58 Mn6.405 O21 Si7C -19.62; 10.41; 17.29
112; 103.4; 83
1560.53Zanazzi, P. F.; Nestola, F.; Nazzareni, S.; Comodi, P.
Pyroxmangite: A high pressure single-crystal study Pressure = 1.24 GPa
American Mineralogist, 2008, 93, 1921-1928
9013285 CIFFe0.015 Mg0.58 Mn6.405 O21 Si7C -19.57; 10.32; 17.16
112.1; 103.2; 82.9
1527.42Zanazzi, P. F.; Nestola, F.; Nazzareni, S.; Comodi, P.
Pyroxmangite: A high pressure single-crystal study Pressure = 3.57 GPa
American Mineralogist, 2008, 93, 1921-1928
9013306 CIFC H2.92 Be Ca0.09 Na0.9 O5P 4/m c c13.1304; 13.1304; 5.4189
90; 90; 90
934.258Pekov, I. V.; Zubkova, N. V.; Chukanov, N. V.; Agakhanov, A. A.; Belakovskiy, D. I.; Horvath, L.; Filinchuk, Y. E.; Gobechiya, E. R.; Pushcharovsky, D. Y.; Rabadanov, M. K.
Niveolanite, the first natural beryllium carbonate, a new mineral species from Mont Saint-Hilaire, Quebec, Canada Locality: Poudrette quarry, Mont Saint-Hilaire, Quebec, Canada
The Canadian Mineralogist, 2008, 46, 1343-1354
9013307 CIFH40 Mg2 Na2 O48 V10C 1 2/c 123.9019; 10.9993; 17.0504
90; 118.284; 90
3947.44Hughes, J. M.; Wise, W. S.; Gunter, M. E.; Morton, J. P.; Rakovan, J.
Lasalite, Na2Mg2[V10O28]*20H2O, a new decavanadate mineral species from the Vanadium Queen mine, La Sal District, Utah: Description, atomic arrangement, and relationship to the pascoite group of minerals
The Canadian Mineralogist, 2008, 46, 1365-1372
9013308 CIFAl1.1 Ca0.1 K0.27 Na0.63 O8 Si2.9C -18.278; 12.949; 7.145
91.79; 116.16; 90.19
686.973Nestola, F.; Curetti, N.; Benna, P.; Ivaldi, G.; Angel, R.; Bruno, E.
Compressibility and high-pressure behavior of Ab63Or27An10 anorthoclase Note: P = 0.0001 GPa
The Canadian Mineralogist, 2008, 46, 1443-1454
9013309 CIFAl1.1 Ca0.1 K0.27 Na0.63 O8 Si2.9C -17.959; 12.767; 6.999
92.51; 116.5; 90.69
635.458Nestola, F.; Curetti, N.; Benna, P.; Ivaldi, G.; Angel, R.; Bruno, E.
Compressibility and high-pressure behavior of Ab63Or27An10 anorthoclase Note: P = 4.7 GPa
The Canadian Mineralogist, 2008, 46, 1443-1454
9013310 CIFAl1.1 Ca0.1 K0.27 Na0.63 O8 Si2.9C -17.89; 12.72; 6.96
92.46; 116.53; 90.83
623.94Nestola, F.; Curetti, N.; Benna, P.; Ivaldi, G.; Angel, R.; Bruno, E.
Compressibility and high-pressure behavior of Ab63Or27An10 anorthoclase Note: P = 6.0 GPa
The Canadian Mineralogist, 2008, 46, 1443-1454
9013311 CIFAl3.84 K0.57 Na3.24 O16 Si4.16P 639.982; 9.982; 8.367
90; 90; 120
721.997Angel, R. J.; Gatta, G. C.; Boffa Ballaran, T.; Carpenter, M. A.
The mechanism of coupling in the modulated structure of nepheline Note: natural sample Note: T = 110 K
The Canadian Mineralogist, 2008, 46, 1465-1476
9013312 CIFAl3.84 K0.57 Na3.24 O16 Si4.16P 639.989; 9.989; 8.3687
90; 90; 120
723.157Angel, R. J.; Gatta, G. C.; Boffa Ballaran, T.; Carpenter, M. A.
The mechanism of coupling in the modulated structure of nepheline Note: natural sample Note: T = 200 K
The Canadian Mineralogist, 2008, 46, 1465-1476
9013313 CIFAl3.84 K0.57 Na3.24 O16 Si4.16P 639.9995; 9.9995; 8.3766
90; 90; 120
725.362Angel, R. J.; Gatta, G. C.; Boffa Ballaran, T.; Carpenter, M. A.
The mechanism of coupling in the modulated structure of nepheline Note: natural sample Note: T = 290 K
The Canadian Mineralogist, 2008, 46, 1465-1476
9013314 CIFAl3.84 K0.57 Na3.24 O16 Si4.16P 639.9751; 9.9751; 8.3658
90; 90; 120
720.896Angel, R. J.; Gatta, G. C.; Boffa Ballaran, T.; Carpenter, M. A.
The mechanism of coupling in the modulated structure of nepheline Note: annealed Note: T = 220 K
The Canadian Mineralogist, 2008, 46, 1465-1476
9013315 CIFAl3.84 K0.57 Na3.24 O16 Si4.16P 639.9698; 9.9698; 8.3615
90; 90; 120
719.76Angel, R. J.; Gatta, G. C.; Boffa Ballaran, T.; Carpenter, M. A.
The mechanism of coupling in the modulated structure of nepheline Note: annealed Note: T = 150 K
The Canadian Mineralogist, 2008, 46, 1465-1476
9013316 CIFAl3.84 K0.57 Na3.24 O16 Si4.16P 639.9685; 9.9685; 8.3608
90; 90; 120
719.512Angel, R. J.; Gatta, G. C.; Boffa Ballaran, T.; Carpenter, M. A.
The mechanism of coupling in the modulated structure of nepheline Note: annealed Note: T = 100 K
The Canadian Mineralogist, 2008, 46, 1465-1476
9013317 CIFAl3.84 K0.57 Na3.24 O16 Si4.16P 639.9801; 9.9801; 8.3707
90; 90; 120
722.042Angel, R. J.; Gatta, G. C.; Boffa Ballaran, T.; Carpenter, M. A.
The mechanism of coupling in the modulated structure of nepheline Note: annealed Note: T = 15 K
The Canadian Mineralogist, 2008, 46, 1465-1476
9013318 CIFAl3.84 K0.57 Na3.24 O16 Si4.16P 639.9867; 9.9861; 8.3697
90; 90; 120
722.867Angel, R. J.; Gatta, G. C.; Boffa Ballaran, T.; Carpenter, M. A.
The mechanism of coupling in the modulated structure of nepheline Note: annealed Note: T = 298 K
The Canadian Mineralogist, 2008, 46, 1465-1476
9013319 CIFAl0.2 Ca1.8 F0.66 Fe0.06 K0.12 Mg4.94 Na0.38 O23.34 Si7.8C 1 2/m 19.85145; 18.02911; 5.273416
90; 104.757; 90
905.733Antao, S. M.; Hassan, I.; Wang, J.; Lee, P. L.; Toby, B. H.
State-of-the-art high-resolution powder X-ray diffraction (HRPXRD) illustrated with Rietveld structure refinement of quartz, sodalite, tremolite, and meionite Locality: Gouverneur district, New York
The Canadian Mineralogist, 2008, 46, 1501-1509
9013320 CIFAl3 Cl Na4 O12 Si3P -4 3 n8.880679; 8.880679; 8.880679
90; 90; 90
700.388Antao, S. M.; Hassan, I.; Wang, J.; Lee, P. L.; Toby, B. H.
State-of-the-art high-resolution powder x-ray diffraction (HRPXRD) illustrated with Rietveld structure refinement of quartz, sodalite, tremolite, and meionite Locality: Bancroft, Ontario
The Canadian Mineralogist, 2008, 46, 1501-1509
9013321 CIFO2 SiP 32 2 14.913437; 4.913437; 5.405118
90; 90; 120
113.007Antao, S. M.; Hassan, I.; Wang, J.; Lee, P. L.; Toby, B. H.
State-of-the-art high-resolution powder x-ray diffraction (HRPXRD) illustrated with Rietveld structure refinement of quartz, sodalite, tremolite, and meionite Locality: not specified
The Canadian Mineralogist, 2008, 46, 1501-1509
9013322 CIFC0.668 Al5.16 Ca3.248 Na0.752 O26.948 S0.235 Si6.84I 4/m12.16559; 12.16559; 7.57446
90; 90; 90
1121.03Antao, S. M.; Hassan, I.; Wang, J.; Lee, P. L.; Toby, B. H.
State-of-the-art high-resolution powder x-ray diffraction (HRPXRD) illustrated with Rietveld structure refinement of quartz, sodalite, tremolite, and meionite Locality: Slyudyanka, Siberia, Russia
The Canadian Mineralogist, 2008, 46, 1501-1509
9013323 CIFC0.01 Al3.12 Ca0.2 Cl0.98 K0.28 Na3.52 O24.07 S0.01 Si8.88I 4/m12.057; 12.057; 7.5644
90; 90; 90
1099.65Sokolova, E.; Hawthorne, F. C.
The crystal chemistry of the scapolite-group minerals. I. crystal structure and long-range order Locality: Pamir, Tajikistan Note: S1
The Canadian Mineralogist, 2008, 46, 1527-1554
9013324 CIFC0.03 Al3.2 Ca0.28 Cl0.96 K0.24 Na3.48 O24.13 S0.01 Si8.8I 4/m12.0541; 12.0541; 7.5682
90; 90; 90
1099.67Sokolova, E.; Hawthorne, F. C.
The crystal chemistry of the scapolite-group minerals. I. crystal structure and long-range order Locality: Pamir, Tajikistan Note: S2
The Canadian Mineralogist, 2008, 46, 1527-1554
9013325 CIFC0.03 Al3.28 Ca0.36 Cl0.95 K0.24 Na3.44 O24.17 S0.02 Si8.72I 4/m12.0566; 12.0566; 7.5696
90; 90; 90
1100.33Sokolova, E.; Hawthorne, F. C.
The crystal chemistry of the scapolite-group minerals. I. crystal structure and long-range order Locality: Pamir, Tajikistan Note: S3
The Canadian Mineralogist, 2008, 46, 1527-1554
9013326 CIFC0.05 Al3.2 Ca0.32 Cl0.94 K0.24 Na3.44 O24.19 S0.01 Si8.8I 4/m12.0538; 12.0538; 7.5714
90; 90; 90
1100.08Sokolova, E.; Hawthorne, F. C.
The crystal chemistry of the scapolite-group minerals. I. crystal structure and long-range order Locality: Pamir, Tajikistan Note: S4
The Canadian Mineralogist, 2008, 46, 1527-1554
9013327 CIFC0.08 Al3.52 Ca0.6 Cl0.89 K0.12 Na3.28 O24.36 S0.03 Si8.56I 4/m12.0471; 12.0471; 7.5793
90; 90; 90
1100Sokolova, E.; Hawthorne, F. C.
The crystal chemistry of the scapolite-group minerals. I. crystal structure and long-range order Locality: Pamir, Tajikistan Note: S5
The Canadian Mineralogist, 2008, 46, 1527-1554
9013328 CIFC0.13 Al3.68 Ca0.84 Cl0.85 K0.04 Na3.12 O40.51 S0.03 Si8.4I 4/m12.045; 12.045; 7.5826
90; 90; 90
1100.1Sokolova, E.; Hawthorne, F. C.
The crystal chemistry of the scapolite-group minerals. I. crystal structure and long-range order Locality: Pamir, Tajikistan Note: S6
The Canadian Mineralogist, 2008, 46, 1527-1554
9013329 CIFC0.17 Al3.76 Ca1.08 Cl0.76 K0.28 Na2.68 O36.79 S0.07 Si8.24P 42/n :212.072; 12.072; 7.5854
90; 90; 90
1105.44Sokolova, E.; Hawthorne, F. C.
The crystal chemistry of the scapolite-group minerals. I. crystal structure and long-range order Locality: Tanzania Note: S7
The Canadian Mineralogist, 2008, 46, 1527-1554
9013330 CIFC0.72 Al3.8 Ca1.16 Cl0.73 K0.28 Na2.56 O46.52 S0.09 Si8.2P 42/n :212.0753; 12.0753; 7.5864
90; 90; 90
1106.19Sokolova, E.; Hawthorne, F. C.
The crystal chemistry of the scapolite-group minerals. I. crystal structure and long-range order Locality: Madagascar Note: S8
The Canadian Mineralogist, 2008, 46, 1527-1554
9013331 CIFC1.04 Al3.84 Ca1.28 Cl0.63 K0.2 Na2.52 O47.56 S0.11 Si8.16P 42/n :212.0793; 12.0793; 7.5842
90; 90; 90
1106.61Sokolova, E.; Hawthorne, F. C.
The crystal chemistry of the scapolite-group minerals. I. crystal structure and long-range order Locality: Pamir, Tajikistan Note: S9
The Canadian Mineralogist, 2008, 46, 1527-1554
9013332 CIFC1.52 Al4.16 Ca1.68 Cl0.48 K0.16 Na2.16 O45.12 S0.14 Si7.84P 42/n :212.0915; 12.0915; 7.5841
90; 90; 90
1108.83Sokolova, E.; Hawthorne, F. C.
The crystal chemistry of the scapolite-group minerals. I. crystal structure and long-range order Locality: Monte Somma, Italy Note: S10
The Canadian Mineralogist, 2008, 46, 1527-1554
9013333 CIFC1.8 Al4.24 Ca1.84 Cl0.46 K0.08 Na2.08 O45.76 S0.09 Si7.76P 42/n :212.0972; 12.0972; 7.5814
90; 90; 90
1109.48Sokolova, E.; Hawthorne, F. C.
The crystal chemistry of the scapolite-group minerals. I. crystal structure and long-range order Locality: Madagascar Note: S11
The Canadian Mineralogist, 2008, 46, 1527-1554
9013334 CIFC2.32 Al4.56 Ca2.32 Cl0.28 K0.12 Na1.56 O47.52 S0.14 Si7.44P 42/n :212.1338; 12.1338; 7.5755
90; 90; 90
1115.33Sokolova, E.; Hawthorne, F. C.
The crystal chemistry of the scapolite-group minerals. I. crystal structure and long-range order Locality: Minden, Canada Note: S12
The Canadian Mineralogist, 2008, 46, 1527-1554
9013335 CIFC3.36 Al4.72 Ca2.68 Cl0.16 K0.08 Na1.24 O50.08 S Si7.28P 42/n :212.1498; 12.1498; 7.5681
90; 90; 90
1117.19Sokolova, E.; Hawthorne, F. C.
The crystal chemistry of the scapolite-group minerals. I. crystal structure and long-range order Locality: Pargas, Finland Note: S13
The Canadian Mineralogist, 2008, 46, 1527-1554
9013336 CIFC3.48 Al4.84 Ca2.76 Cl0.13 K0.04 Na1.2 O50.44 S Si7.16P 42/n :212.152; 12.152; 7.5673
90; 90; 90
1117.47Sokolova, E.; Hawthorne, F. C.
The crystal chemistry of the scapolite-group minerals. I. crystal structure and long-range order Locality: Bolton, USA Note: S14
The Canadian Mineralogist, 2008, 46, 1527-1554
9013337 CIFC2.76 Al5.12 Ca3.08 Cl0.02 K0.04 Na0.88 O53.44 S0.29 Si6.88P 42/n :212.1674; 12.1674; 7.5779
90; 90; 90
1121.88Sokolova, E.; Hawthorne, F. C.
The crystal chemistry of the scapolite-group minerals. I. crystal structure and long-range order Locality: Sluydyanka, Russia Note: S15
The Canadian Mineralogist, 2008, 46, 1527-1554
9013338 CIFC2.84 Al5.16 Ca3.12 Cl0.02 K0.04 Na0.84 O53.6 S0.27 Si6.84I 4/m12.1713; 12.1713; 7.5801
90; 90; 90
1122.92Sokolova, E.; Hawthorne, F. C.
The crystal chemistry of the scapolite-group minerals. I. crystal structure and long-range order Locality: Sluydyanka, Russia Note: S16
The Canadian Mineralogist, 2008, 46, 1527-1554
9013339 CIFC3.64 Al5.48 Ca3.52 Cl0.07 K0.16 Na0.32 O47 S0.02 Si6.52I 4/m12.205; 12.205; 7.5816
90; 90; 90
1129.37Sokolova, E.; Hawthorne, F. C.
The crystal chemistry of the scapolite-group minerals. I. crystal structure and long-range order Locality: Monte Somma, Italy Note: S17
The Canadian Mineralogist, 2008, 46, 1527-1554
9013340 CIFC3.76 Al5.64 Ca3.72 Cl0.03 K0.12 Na0.2 O47.4 S0.03 Si6.4I 4/m12.2077; 12.2077; 7.5832
90; 90; 90
1130.11Sokolova, E.; Hawthorne, F. C.
The crystal chemistry of the scapolite-group minerals. I. crystal structure and long-range order Locality: Royal Ontario Museum Note: S18
The Canadian Mineralogist, 2008, 46, 1527-1554
9013341 CIFC0.24 Al3.56 Ca1.24 Cl0.76 Na2.76 O28 Si8.44P 42/n :212.06503; 12.06503; 7.5836
90; 90; 90
1103.91Antao, S. M.; Hassan, I.
Increase in Al-Si and Na-Ca disorder with temperature in scapolite Me32.9 Note: T = 25 C (HRPXRD) Note: 32.9% Meionite, 67.1% Marialite
The Canadian Mineralogist, 2008, 46, 1577-1591
9013342 CIFC0.24 Al3.56 Ca1.24 Cl0.76 Na2.76 O28 Si8.44P 42/n :212.0652; 12.0652; 7.5827
90; 90; 90
1103.81Antao, S. M.; Hassan, I.
Increase in Al-Si and Na-Ca disorder with temperature in scapolite Me32.9 Note: T = 26 C Note: 32.9% Meionite, 67.1% Marialite
The Canadian Mineralogist, 2008, 46, 1577-1591
9013343 CIFC0.24 Al3.56 Ca1.24 Cl0.76 Na2.76 O28 Si8.44P 42/n :212.0749; 12.0749; 7.5814
90; 90; 90
1105.39Antao, S. M.; Hassan, I.
Increase in Al-Si and Na-Ca disorder with temperature in scapolite Me32.9 Note: T = 105 C Note: 32.9% Meionite, 67.1% Marialite
The Canadian Mineralogist, 2008, 46, 1577-1591
9013344 CIFC0.24 Al3.56 Ca1.24 Cl0.76 Na2.76 O28 Si8.44P 42/n :212.0882; 12.0882; 7.5808
90; 90; 90
1107.74Antao, S. M.; Hassan, I.
Increase in Al-Si and Na-Ca disorder with temperature in scapolite Me32.9 Note: T = 204 C Note: 32.9% Meionite, 67.1% Marialite
The Canadian Mineralogist, 2008, 46, 1577-1591
9013345 CIFC0.24 Al3.56 Ca1.24 Cl0.76 Na2.76 O28 Si8.44P 42/n :212.1025; 12.1025; 7.5804
90; 90; 90
1110.31Antao, S. M.; Hassan, I.
Increase in Al-Si and Na-Ca disorder with temperature in scapolite Me32.9 Note: T = 305 C Note: 32.9% Meionite, 67.1% Marialite
The Canadian Mineralogist, 2008, 46, 1577-1591
9013346 CIFC0.24 Al3.56 Ca1.24 Cl0.76 Na2.76 O28 Si8.44P 42/n :212.1172; 12.1172; 7.58
90; 90; 90
1112.94Antao, S. M.; Hassan, I.
Increase in Al-Si and Na-Ca disorder with temperature in scapolite Me32.9 Note: T = 405 C Note: 32.9% Meionite, 67.1% Marialite
The Canadian Mineralogist, 2008, 46, 1577-1591
9013347 CIFC0.24 Al3.56 Ca1.24 Cl0.76 Na2.76 O28 Si8.44P 42/n :212.1335; 12.1335; 7.5801
90; 90; 90
1115.96Antao, S. M.; Hassan, I.
Increase in Al-Si and Na-Ca disorder with temperature in scapolite Me32.9 Note: T = 505 C Note: 32.9% Meionite, 67.1% Marialite
The Canadian Mineralogist, 2008, 46, 1577-1591
9013348 CIFC0.24 Al3.56 Ca1.24 Cl0.76 Na2.76 O28 Si8.44P 42/n :212.151; 12.151; 7.58
90; 90; 90
1119.16Antao, S. M.; Hassan, I.
Increase in Al-Si and Na-Ca disorder with temperature in scapolite Me32.9 Note: T = 603 C Note: 32.9% Meionite, 67.1% Marialite
The Canadian Mineralogist, 2008, 46, 1577-1591
9013349 CIFC0.24 Al3.56 Ca1.24 Cl0.76 Na2.76 O28 Si8.44P 42/n :212.1673; 12.1673; 7.5799
90; 90; 90
1122.15Antao, S. M.; Hassan, I.
Increase in Al-Si and Na-Ca disorder with temperature in scapolite Me32.9 Note: T = 702 C Note: 32.9% Meionite, 67.1% Marialite
The Canadian Mineralogist, 2008, 46, 1577-1591
9013350 CIFC0.24 Al3.56 Ca1.24 Cl0.76 Na2.76 O28 Si8.44P 42/n :212.1844; 12.1844; 7.5799
90; 90; 90
1125.31Antao, S. M.; Hassan, I.
Increase in Al-Si and Na-Ca disorder with temperature in scapolite Me32.9 Note: T = 801 C Note: 32.9% Meionite, 67.1% Marialite
The Canadian Mineralogist, 2008, 46, 1577-1591
9013351 CIFC0.24 Al4.48 Ca1.24 Cl0.76 Na2.76 O28 Si7.52P 42/n :212.1974; 12.1974; 7.5795
90; 90; 90
1127.65Antao, S. M.; Hassan, I.
Increase in Al-Si and Na-Ca disorder with temperature in scapolite Me32.9 Note: T = 902 C Note: 32.9% Meionite, 67.1% Marialite
The Canadian Mineralogist, 2008, 46, 1577-1591
9013352 CIFAl Na O6 Si2C 1 2/c 19.41591; 8.55521; 5.22073
90; 107.564; 90
400.95Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K Locality: Hweka and Mamon mining district, Burma Note: T = 2.4 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013353 CIFAl Na O6 Si2C 1 2/c 19.41591; 8.55521; 5.22073
90; 107.564; 90
400.95Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K Locality: Hweka and Mamon mining district, Burma Note: T = 10.3 K Note: b parameter changed from paper
The Canadian Mineralogist, 2008, 46, 1593-1622
9013354 CIFAl Na O6 Si2C 1 2/c 19.41591; 8.55521; 5.22073
90; 107.564; 90
400.95Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K Locality: Hweka and Mamon mining district, Burma Note: T = 19.7 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013355 CIFAl Na O6 Si2C 1 2/c 19.41591; 8.55521; 5.22073
90; 107.564; 90
400.95Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K Locality: Hweka and Mamon mining district, Burma Note: T = 29.5 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013356 CIFAl Na O6 Si2C 1 2/c 19.41591; 8.55521; 5.22073
90; 107.564; 90
400.949Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K Locality: Hweka and Mamon mining district, Burma Note: T = 39.0 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013357 CIFAl Na O6 Si2C 1 2/c 19.41592; 8.55523; 5.22073
90; 107.565; 90
400.949Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013358 CIFAl Na O6 Si2C 1 2/c 19.41594; 8.55527; 5.22074
90; 107.565; 90
400.952Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K Locality: Hweka and Mamon mining district, Burma Note: T = 55.1 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013359 CIFAl Na O6 Si2C 1 2/c 19.41599; 8.55535; 5.22075
90; 107.566; 90
400.957Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K Locality: Hweka and Mamon mining district, Burma Note: T = 64.0 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013360 CIFAl Na O6 Si2C 1 2/c 19.41607; 8.55547; 5.22077
90; 107.567; 90
400.966Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013361 CIFAl Na O6 Si2C 1 2/c 19.4162; 8.55566; 5.2208
90; 107.568; 90
400.981Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K Locality: Hweka and Mamon mining district, Burma Note: T = 83.0 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013362 CIFAl Na O6 Si2C 1 2/c 19.41644; 8.556; 5.22088
90; 107.569; 90
401.011Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K Locality: Hweka and Mamon mining district, Burma Note: T = 96.5 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013363 CIFAl Na O6 Si2C 1 2/c 19.41666; 8.55631; 5.22095
90; 107.569; 90
401.039Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K Locality: Hweka and Mamon mining district, Burma Note: T = 106.4 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013364 CIFAl Na O6 Si2C 1 2/c 19.41686; 8.5566; 5.22101
90; 107.57; 90
401.065Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K Locality: Hweka and Mamon mining district, Burma Note: T = 114.5 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013365 CIFAl Na O6 Si2C 1 2/c 19.41707; 8.55688; 5.22108
90; 107.57; 90
401.092Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K Locality: Hweka and Mamon mining district, Burma Note: T = 121.9 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013366 CIFAl Na O6 Si2C 1 2/c 19.41759; 8.5576; 5.22127
90; 107.57; 90
401.161Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K Locality: Hweka and Mamon mining district, Burma Note: T = 138.8 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013367 CIFAl Na O6 Si2C 1 2/c 19.41797; 8.55811; 5.2214
90; 107.571; 90
401.211Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K Locality: Hweka and Mamon mining district, Burma Note: T = 149.6 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013368 CIFAl Na O6 Si2C 1 2/c 19.41823; 8.55846; 5.2215
90; 107.571; 90
401.246Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K Locality: Hweka and Mamon mining district, Burma Note: T = 156.8 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013369 CIFAl Na O6 Si2C 1 2/c 19.41857; 8.55892; 5.22162
90; 107.571; 90
401.291Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K Locality: Hweka and Mamon mining district, Burma Note: T = 165.9 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013370 CIFAl Na O6 Si2C 1 2/c 19.41893; 8.55941; 5.22176
90; 107.571; 90
401.34Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K Locality: Hweka and Mamon mining district, Burma Note: T = 175.1 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013371 CIFAl Na O6 Si2C 1 2/c 19.41931; 8.55991; 5.2219
90; 107.571; 90
401.39Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K Locality: Hweka and Mamon mining district, Burma Note: T = 184.5 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013372 CIFAl Na O6 Si2C 1 2/c 19.41972; 8.56046; 5.22206
90; 107.571; 90
401.446Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K Locality: Hweka and Mamon mining district, Burma Note: T = 194.3 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013373 CIFAl Na O6 Si2C 1 2/c 19.42012; 8.56099; 5.22221
90; 107.571; 90
401.499Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K Locality: Hweka and Mamon mining district, Burma Note: T = 203.6 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013374 CIFAl Na O6 Si2C 1 2/c 19.42054; 8.56154; 5.22237
90; 107.571; 90
401.555Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013375 CIFAl Na O6 Si2C 1 2/c 19.42095; 8.56209; 5.22253
90; 107.571; 90
401.61Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013376 CIFAl Na O6 Si2C 1 2/c 19.42137; 8.56264; 5.22269
90; 107.571; 90
401.666Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013377 CIFAl Na O6 Si2C 1 2/c 19.42179; 8.56318; 5.22285
90; 107.571; 90
401.722Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013378 CIFAl Na O6 Si2C 1 2/c 19.42222; 8.56375; 5.22302
90; 107.571; 90
401.78Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013379 CIFAl Na O6 Si2C 1 2/c 19.42266; 8.56432; 5.2232
90; 107.571; 90
401.839Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013380 CIFAl Na O6 Si2C 1 2/c 19.4231; 8.5649; 5.22337
90; 107.571; 90
401.898Knight, K. S.; Price, G. D.
Powder neutron-diffraction studies of clinopyroxenes. I. The crystal structure and thermoelastic properties of jadeite between 1.5 and 270 K
The Canadian Mineralogist, 2008, 46, 1593-1622
9013384 CIFAl2.901 Fe0.113 K0.811 Mg1.986 Na0.052 O30 Si12P 6/m c c10.0946; 10.0946; 14.3311
90; 90; 120
1264.7Balassone, G.; Mormone, A.; Rossi, M.; Bernardi, A.; Fisch, M.; Armbruster, T.; Malsy, K.; Berger, A.
Crystal chemical and structural characterization of an Mg-rich osumilite from Vesuvius volcano (Italy) Locality: Vesuvius volcano, Italy
European Journal of Mineralogy, 2008, 20, 713-720
9013385 CIFAl8.001 B3.39 Ca0.09 Fe0.009 H6.6 Li0.9 Mn0.09 Na0.53 O31 Si5.61R 3 m :H15.777; 15.777; 7.086
90; 90; 120
1527.5Ertl, A.; Tillmanns, E.; Ntaflos, T.; Francis, C.; Giester, G.; Korner, W.; Hughes, J. M.; Lengauer, C.; Prem, M.
Tetrahedrally coordinated boron in Al-rich tourmaline and its relationship to the pressure-temperature conditions of formation Note: O5 and O6 z-coordinates changed to match reported bond lengths
European Journal of Mineralogy, 2008, 20, 881-888
9013386 CIFAl4.5 B0.5 O9.5 SiC m c 215.7168; 15.023; 7.675
90; 90; 90
659.156Buick, I. S.; Grew, E. S.; Armbruster, T.; Medenbach, O.; Yates, M.; Bebout, G.; Clarke, G.
Boromullite, Al9BSi2O19, a new mineral from granulite-facies metapelites, Mount Safford, central Australia: a natural analogue of a synthetic "boron-mullite" Locality: Mount Safford, central Australia
European Journal of Mineralogy, 2008, 20, 935-950
9013387 CIFB3.112 Mg8 O16.026 Si1.028P n m a20.494; 11.89; 4.588
90; 90; 90
1117.97Galuskina, I. O.; Kadiyski, M.; Armbruster, T.; Galuskin, E. V.; Pertsev, N. N.; Dzierzanowski, P.; Wrzalik, R.
A new natural phase in the system Mg2SiO4-Mg2BO3F-Mg2BO3(OH): composition, paragenesis and structure of OH-dominant pertsevite
European Journal of Mineralogy, 2008, 20, 951-964
9013388 CIFAl B3 Ca O7C m m a7.967; 11.723; 4.3718
90; 90; 90
408.314Kadiyski, M.; Armbruster, T.; Gunther, D.; Reusser, E.; Peretti, A.
Johachidolite, CaAl[B3O7], a mineralogical and structural peculiarity
European Journal of Mineralogy, 2008, 20, 965-973
9013389 CIFCa0.129 Fe4.759 Mg0.327 Na1.871 O20 Si5.914 TiP -110.415; 10.84; 8.931
105.107; 96.61; 125.398
746.778Grew, E. S.; Halenius, U.; Pasero, M.
The crystal-chemistry of aenigmatite revisited: electron microprobe data, structure refinement and Mossbauer spectroscopy of aenigmatite from Vesteroya (Norway)
European Journal of Mineralogy, 2008, 20, 983-991
9013390 CIFAl2.89 Ca0.21 H3 Mn1.9 O14 Si3P 1 21/m 18.697; 5.787; 9.769
90; 108.91; 90
465.133Hatert, F.; Fransolet, A. M.; Wouters, J.; Bernhardt, H. J.
The crystal structure of sursassite from the Lienne Valley, Stavelot Massif, Belgium
European Journal of Mineralogy, 2008, 20, 993-998
9013494 CIFAl1.92 Ca1.1 Fe0.88 H Mn0.2 O13 Si3 Sr0.9P 1 21/m 18.928; 5.652; 10.244
90; 114.46; 90
470.53Minakawa, T.; Fukushima, H.; Nishio-Hamane D; Miura, H.
Epidote-(Sr), CaSrAl2Fe(Si2O7)(SiO4)(OH), a new mineral from the Ananai mine, Kochi Prefecture, Japan Locality: Ananai mine, Kochi Prefecture, Japan
Journal of Mineralogical and Petrological Sciences, 2008, 103, 400-406
9013499 CIFFe2 S3 TlC m c m9.083; 10.754; 5.412
90; 90; 90
528.636Balic-Zunic T; Karanovic, L.; Poleti, D.
Crystal structure of picotpaulite, TlFe2S3, from Allchar, FYR Macedonia
Acta Chimica Slovenica, 2008, 55, 801-809
9013778 CIFAs2 Fe3 H6 O14 Pb Zn0.438C 1 2/c 125.8898; 14.8753; 12.17
90; 110.681; 90
4384.88Grey, I. E.; Mumme, W. G.; Bordet, P.
A new crystal-chemical variation of the alunite-type structure in monoclinic PbZn0.5Fe3(AsO4)2(OH)6
The Canadian Mineralogist, 2008, 46, 1355-1364
9013824 CIFBa0.51 Cr1.12 O14.489 Si0.978 Ti2.8 V3.08P -17.5208; 7.643; 9.5724
110.204; 103.338; 98.281
487.14Armbruster, T.; Kadiyski, M.; Reznitsky, L. Z.; Sklyarov, E. V.; Galuskin, E. V.
Batisivite, the first silicate related to the derbylite-hemloite group
European Journal of Mineralogy, 2008, 20, 975-981
9013825 CIFAl3.26 Ca1.14 Fe3.27 H2 K0.96 Mg0.33 Mn0.1 Na1.33 O24 Si6 Ti0.06C 1 2/m 19.8505; 18.0075; 5.3518
90; 104.775; 90
917.928Oberti, R.; Boiocchi, M.; Smith, D. C.; Medenbach, O.; Helmers, H.
Potassic-aluminotaramite from Sierra de los Filabres, Spain
European Journal of Mineralogy, 2008, 20, 1005-1010
9013826 CIFLa0.71 Nd0.15 O4 Pr0.11 Sm0.01 V Y0.02I 41/a m d :27.432; 7.432; 6.521
90; 90; 90
360.185Witzke, T.; Kolitsch, U.; Warnsloh, J. M.; Goske, J.
Wakefieldite-(La), LaVO4, a new mineral species from the Glucksstern Mine, Friedrichroda, Thuringia, Germany
European Journal of Mineralogy, 2008, 20, 1135-1139
9013896 CIFAs3 Ba2.951 Cl O12 Sr2.047P 63/m10.39; 10.39; 7.575
90; 90; 120
708.181Dordevic, T.; Sutovic, S.; Stojanovic, J.; Karanovic, L.
Sr, Ba and Cd arsenates with the apatite-type structure
Acta Crystallographica, Section C, 2008, 64, i82-i86
9013945 CIFCl3 I O4 Pb3C m m 27.971; 7.976; 27.341
90; 90; 90
1738.25Bindi, L.; Welch, M. D.; Bonazzi, P.; Pratesi, G.; Menchetti, S.
The crystal structure of seeligerite, Pb3IO4Cl3, a rare Pb-I-oxychloride from the San Rafael mine, Sierra Gorda, Chile Locality: San Rafael mine, Sierra Gorda, Chile
Mineralogical Magazine, 2008, 71, 771-783
9013946 CIFCu3 H2 O8 Pb TeF d d 25.7491; 10.0176; 24.022
90; 90; 90
1383.48Cooper, M. A.; Hawthorne, F. C.; Back, M. E.
The crystal structure of khinite and polytypism in khinite and parakhinite Locality: the Empire mine, Tombstone, Arizona, USA
Mineralogical Magazine, 2008, 72, 763-770
9014102 CIFCr2 Fe S4F d -3 m :29.9763; 9.9763; 9.9763
90; 90; 90
992.907Lo Presti, L.; Destro, R.
Experimental and theoretical charge density distribution of the colossal magnetoresistive transition metal sulfide FeCr2S4 T = 23 K
Journal of Chemical Physics, 2008, 128, 044710-044719
9014150 CIFAl0.55 Ca2 Fe1.45 O5I 2 m b5.2866; 14.3321; 5.5163
90; 90; 90
417.959Vanpeteghem, C. B.; Angel, R. J.; Zhao, J.; Ross, N. L.; Redhammer, G. J.; Seifert, F.
The effect of oxygen vacancies and aluminium substitution on the high-pressure properties of brownmillerite-structured Ca2Fe2-xAlxO5 Note: x = 0.55 Note: P = 7.73 GPa
Physics and Chemistry of Minerals, 2008, 35, 493-504
9014172 CIFBi2 Pb3 S6B b m m13.216; 20.163; 4.03
90; 90; 90
1073.89Olsen, L. A.; Balic Zunic, T.; Makovicky, E.
High-pressure anisotropic distortion of Pb3Bi2S6: a pressure-induced, reversible phase transition with migration of chemical bonds Note: P = 3.73 GPa Note: occupancies not refined
Inorganic Chemistry, 2008, 47, 6756-6762
9014185 CIFBi2 Pb3 S6P b n m11.026; 23.023; 4.0233
90; 90; 90
1021.32Olsen, L. A.; Balic Zunic, T.; Makovicky, E.
High-pressure anisotropic distortion of Pb3Bi2S6: a pressure-induced, reversible phase transition with migration of chemical bonds Note: P = 5.27 GPa Note: occupancies not refined Note: phase known as beta-Pb3Bi2S6
Inorganic Chemistry, 2008, 47, 6756-6762
9014319 CIFCa2 Fe2 O5P n m a5.3422; 14.5385; 5.5277
90; 90; 90
429.323Vanpeteghem, C. B.; Angel, R. J.; Zhao, J.; Ross, N. L.; Redhammer, G. J.; Seifert, F.
The effect of oxygen vacancies and aluminium substitution on the high-pressure properties of brownmillerite-structured Ca2Fe2-xAlxO5 Note: x = 0.0 Note: P = 6.326 GPa
Physics and Chemistry of Minerals, 2008, 35, 493-504
9014351 CIFAl0.55 Ca2 Fe1.45 O5I 2 m b5.3394; 14.4853; 5.5584
90; 90; 90
429.902Vanpeteghem, C. B.; Angel, R. J.; Zhao, J.; Ross, N. L.; Redhammer, G. J.; Seifert, F.
The effect of oxygen vacancies and aluminium substitution on the high-pressure properties of brownmillerite-structured Ca2Fe2-xAlxO5 Note: x = 0.55 Note: P = 3.21 GPa
Physics and Chemistry of Minerals, 2008, 35, 493-504
9014371 CIFCa2 Fe2 O5P n m a5.3246; 14.4819; 5.511
90; 90; 90
424.955Vanpeteghem, C. B.; Angel, R. J.; Zhao, J.; Ross, N. L.; Redhammer, G. J.; Seifert, F.
The effect of oxygen vacancies and aluminium substitution on the high-pressure properties of brownmillerite-structured Ca2Fe2-xAlxO5 Note: x = 0.0 Note: P = 8.167 GPa
Physics and Chemistry of Minerals, 2008, 35, 493-504
9014400 CIFAl1.884 Be2.859 Cu0.141 Fe0.116 H0.88 Li0.12 O18.44 Si6P 6/m c c9.2502; 9.2502; 9.2184
90; 90; 120
683.107Adamo, I.; Gatta, G. D.; Rotiroti, N.; Diella, V.; Pavese, A.
Gemmological investigation of a synthetic blue beryl: a multi-methodological study Note: Sample: M2-1
Mineralogical Magazine, 2008, 72, 799-808
9014427 CIFAs2 Eu Fe2F m m m5.5546; 5.4983; 12.059
90; 90; 90
368.292Tegel, M.; Rotter, M.; Weiss, V.; Schappacher, F. M.; Pottgen, R.; Johrendt, D.
Structural and magnetic phase transitions in the ternary iron arsenides SrFe2As2 and EuFe2As2 Note: T = 10 K
Journal of Physics: Condensed Matter, 2008, 20, 452201_1-452201_5
9014485 CIFBi2 Pb3 S6B b m m13.353; 20.367; 4.0615
90; 90; 90
1104.57Olsen, L. A.; Balic Zunic, T.; Makovicky, E.
High-pressure anisotropic distortion of Pb3Bi2S6: a pressure-induced, reversible phase transition with migration of chemical bonds Note: P = 1.95 GPa Note: occupancies not refined
Inorganic Chemistry, 2008, 47, 6756-6762
9014528 CIFFe2 SiP -3 m 14.052; 4.052; 5.085
90; 90; 120
72.304Errandonea, D.; Santamaría-Pérez D; Vegas, A.; Nuss, J.; Jansen, M.; Rodríguez-Hernández P; Muñoz, A.
Structural stability of Fe5Si3 and Ni2Si studied by high-pressure X-ray diffraction and ab initio total-energy calculations
Physical Review B - Condensed Matter, 2008, 77, 094113-1-094113-12
9014543 CIFAl7 Ca6 Cl O16I -4 3 d12.0095; 12.0095; 12.0095
90; 90; 90
1732.11Iwata, T.; Haniuda, M.; Fukuda, K.
Crystal structure of Ca12Al14O32Cl2 and luminescence properties of Ca12Al14O32Cl2:Eu2+
Journal of Solid State Chemistry, 2008, 181, 51-55
9014570 CIFAl7.08 B3 Ca0.62 F0.84 Fe0.66 H2.43 Li0.99 Mg0.24 Na0.32 O30.15 Si6 Ti0.03R 3 m :H15.894; 15.894; 7.115
90; 90; 120
1556.58Rozhdestvenskaya, I. V.; Bronzova, Y. M.; Frank-Kamenetskaya O V; Zolotarev, A. A.; Kuznetsova, L. G.; Bannova, I. I.
Refinement of the crystal structure of calcium-lithium-aluminum tourmaline from the pegmatite vein in the Sangilen Upland (Tuva Republic)
Crystallography Reports, 2008, 53, 223-227
9014598 CIFCa0.58 Fe0.5 Mg0.5 Na0.42 O6 Si2C 1 2/c 19.663; 8.813; 5.2184
90; 106.4; 90
426.318Mills, S. J.; Groat, L. A.
The crystal structure of yellow aegirine-augite from Mount Anakie, Victoria
Australian Journal of Mineralogy, 2008, 14, 43-45
9014632 CIFCa4 F Fe0.08 Hf0.01 Mg0.03 Na2 Nb0.97 O17 Si4 Ti0.09 Zr0.9P 1 21 110.8459; 10.226; 7.2727
90; 109.332; 90
761.136Chakhmouradian, A. R.; Mitchell, R. H.; Burns, P. C.; Mikhailova, Y.; Reguir, E. P.
Marianoite, a new member of the cuspidine group from the Prairie Lake silicocarbonatite, Ontario Note: ordering of elements in M1 and M2 could not be determined
The Canadian Mineralogist, 2008, 46, 1023-1032
9014661 CIFAl0.37 Ca2 Fe1.63 O5P n m a5.2953; 14.3759; 5.5037
90; 90; 90
418.968Vanpeteghem, C. B.; Angel, R. J.; Zhao, J.; Ross, N. L.; Redhammer, G. J.; Seifert, F.
The effect of oxygen vacancies and aluminium substitution on the high-pressure properties of brownmillerite-structured Ca2Fe2-xAlxO5 Note: x = 0.37 Note: P = 8.89 GPa
Physics and Chemistry of Minerals, 2008, 35, 493-504
9014668 CIFBa O3 TiP 4 m m3.9988; 3.9988; 4.0222
90; 90; 90
64.317Xiao, C. J.; Jin, C. Q.; Wang, X. H.
Crystal structure of dense nanocrystalline BaTiO3 ceramics Note: phase T (tetragonal)
Materials Chemistry and Physics, 2008, 111, 209-212
9014764 CIFCa2 Fe2 O5P n m a5.3956; 14.6756; 5.5703
90; 90; 90
441.077Vanpeteghem, C. B.; Angel, R. J.; Zhao, J.; Ross, N. L.; Redhammer, G. J.; Seifert, F.
The effect of oxygen vacancies and aluminium substitution on the high-pressure properties of brownmillerite-structured Ca2Fe2-xAlxO5 Note: x = 0.0 Note: P = 2.249 GPa
Physics and Chemistry of Minerals, 2008, 35, 493-504
9014771 CIFAl1.892 Be2.829 Cu0.171 Fe0.108 H0.96 Li0.12 O18.48 Si6P 6/m c c9.2483; 9.2483; 9.2193
90; 90; 120
682.893Adamo, I.; Gatta, G. D.; Rotiroti, N.; Diella, V.; Pavese, A.
Gemmological investigation of a synthetic blue beryl: a multi-methodological study Note: Sample: M2-3
Mineralogical Magazine, 2008, 72, 799-808
9014906 CIFCa0.51 Fe0.33 Mg0.35 Mn3.81 O15 Si5P -16.6818; 7.633; 11.795
105.49; 92.49; 94.01
577.092Leverett, P.; Williams, P. A.; Hibbs, D. E.
Ca-Mg-Fe-rich rhodonite from the Morro da Mina mine, Conselheiro Lafaiete, Minas Gerais, Brazil
The Mineralogical Record, 2008, 39, 125-130
9014911 CIFCa0.055 Fe0.08 Mg0.055 Mn0.215 Na4.75 Nb0.255 O13 P Si2 Ta0.005 Ti1.415 Zr0.055P -15.417; 7.119; 14.487
99.957; 96.711; 90.36
546.286Camara, F.; Sokolova, E.; Hawthorne, F. C.; Abdu, Y.
From structure topology to chemical composition. IX. Titanium silicates: revision of the crystal chemistry of lomonosovite and murmanite, Group-IV minerals
Mineralogical Magazine, 2008, 72, 1207-1228
9014915 CIFAl90 Ca36 Cl3 H12 K9 Na21 O470 S26 Si90P 312.913; 12.913; 79.605
90; 90; 120
11495.4Rastsvetaeva, R. K.; Chukanov, N. V.
Model of the crystal structure of biachellaite as a new 30-layer member of the cancrinite group
Crystallography Reports, 2008, 53, 981-988
9014962 CIFAl0.55 Ca2 Fe1.45 O5I 2 m b5.383; 14.61; 5.592
90; 90; 90
439.786Vanpeteghem, C. B.; Angel, R. J.; Zhao, J.; Ross, N. L.; Redhammer, G. J.; Seifert, F.
The effect of oxygen vacancies and aluminium substitution on the high-pressure properties of brownmillerite-structured Ca2Fe2-xAlxO5 Note: x = 0.55 Note: P = 0.0001 GPa
Physics and Chemistry of Minerals, 2008, 35, 493-504
9015011 CIFB Ca H O3P 1 21/a 18.643; 9.523; 3.567
90; 119.23; 90
256.206Miura, H.; Kusachi, I.
Crystal structure of sibirskite (CaHBO3) by Monte Carlo simulation and Rietveld refinement
Journal of Mineralogical and Petrological Sciences, 2008, 103, 156-160
9015014 CIFBi2 Pb3 S6P b n m10.891; 22.638; 3.9926
90; 90; 90
984.377Olsen, L. A.; Balic Zunic, T.; Makovicky, E.
High-pressure anisotropic distortion of Pb3Bi2S6: a pressure-induced, reversible phase transition with migration of chemical bonds Note: P = 7.92 GPa Note: occupancies not refined Note: phase known as beta-Pb3Bi2S6
Inorganic Chemistry, 2008, 47, 6756-6762
9015305 CIFAl0.37 Ca2 Fe1.63 O5P n m a5.3769; 14.6032; 5.5712
90; 90; 90
437.45Vanpeteghem, C. B.; Angel, R. J.; Zhao, J.; Ross, N. L.; Redhammer, G. J.; Seifert, F.
The effect of oxygen vacancies and aluminium substitution on the high-pressure properties of brownmillerite-structured Ca2Fe2-xAlxO5 Note: x = 0.37 Note: P = 2.015 GPa
Physics and Chemistry of Minerals, 2008, 35, 493-504
9015398 CIFBi2 Pb3 S6B b m m13.54; 20.637; 4.1103
90; 90; 90
1148.52Olsen, L. A.; Balic Zunic, T.; Makovicky, E.
High-pressure anisotropic distortion of Pb3Bi2S6: a pressure-induced, reversible phase transition with migration of chemical bonds Note: P = 0.0001 GPa Note: occupancies not refined
Inorganic Chemistry, 2008, 47, 6756-6762
9015453 CIFCa2.92 Ce0.54 F2.76 Gd0.04 La0.24 Na2.9 Nb0.75 Nd0.18 O15.24 Pr0.06 Si4 Sm0.04 Sr0.04 Ta0.01 Ti0.24 Y0.04P 1 21/c 17.468; 5.689; 18.891
90; 101.37; 90
786.841Sokolova, E.; Hawthorne, F. C.
From structure topology to chemical composition. V. Titanium silicates: The crystal chemistry of nacareniobsite-(Ce)
The Canadian Mineralogist, 2008, 46, 1333-1342
9015455 CIFCa0.105 Fe0.075 H4 K0.025 Mg0.035 Mn0.165 Na1.645 Nb0.255 O11 Si2 Ti1.605 Zr0.005P -15.3875; 7.0579; 12.176
93.511; 107.943; 90.093
439.538Camara, F.; Sokolova, E.; Hawthorne, F. C.; Abdu, Y.
From structure topology to chemical composition. IX. Titanium silicates: revision of the crystal chemistry of lomonosovite and murmanite, Group-IV minerals
Mineralogical Magazine, 2008, 72, 1207-1228
9015511 CIFAl1.882 Be2.856 Cu0.144 Fe0.118 H0.98 Li0.12 O18.49 Si6P 6/m c c9.2489; 9.2489; 9.2211
90; 90; 120
683.115Adamo, I.; Gatta, G. D.; Rotiroti, N.; Diella, V.; Pavese, A.
Gemmological investigation of a synthetic blue beryl: a multi-methodological study Note: Sample: M2-2
Mineralogical Magazine, 2008, 72, 799-808
9015541 CIFFe0.925 H0.39 K Mg2.075 O12 Si4C 1 2/m 15.3237; 9.2149; 10.1597
90; 99.97; 90
490.881Scordari, F.; Schingaro, E.; Ventruti, G.; Lacalamita, M.; Ottolini, L.
Red micas from basal ignimbrites of Mt. Vulture (Italy): interlayer content appraisal by a multi-methodic approach Note: Sample LC7_R4
Physics and Chemistry of Minerals, 2008, 35, 163-174
9015566 CIFPt Sb1.347 Sn1.821I m -39.3887; 9.3887; 9.3887
90; 90; 90
827.592Liang, Y.; Borrmann, H.; Baenitz, M.; Schnelle, W.; Budnyk, S.; Zhao, J. T.; Grin, Y.
SnxPt4SnySb12-y: A skutterudite with covalently bonded filler
Inorganic Chemistry, 2008, 47, 9489-9496
9015601 CIFCl2 Cu H2 O4 Pb3P 1 21/m 16.6972; 5.7538; 10.4686
90; 97.747; 90
399.719Siidra, O. I.; Krivovichev, S. V.; Turner, R. W.; Rumsey, M. S.
Chloroxiphite Pb3CuO2(OH)2Cl2: structure refinement and description in terms of oxocentred OPb4 tetrahedra
Mineralogical Magazine, 2008, 72, 793-798
9015615 CIFBi2 Pb3 S6B b m m13.28; 20.26; 4.0448
90; 90; 90
1088.27Olsen, L. A.; Balic Zunic, T.; Makovicky, E.
High-pressure anisotropic distortion of Pb3Bi2S6: a pressure-induced, reversible phase transition with migration of chemical bonds Note: P = 2.90 GPa Note: occupancies not refined
Inorganic Chemistry, 2008, 47, 6756-6762
9015715 CIFBa O3 TiA m m 24.0094; 5.6214; 5.6386
90; 90; 90
127.085Xiao, C. J.; Jin, C. Q.; Wang, X. H.
Crystal structure of dense nanocrystalline BaTiO3 ceramics Note: phase O (orthorhombic)
Materials Chemistry and Physics, 2008, 111, 209-212
9015720 CIFCa2 Fe2 O5P n m a5.3522; 14.5621; 5.5354
90; 90; 90
431.425Vanpeteghem, C. B.; Angel, R. J.; Zhao, J.; Ross, N. L.; Redhammer, G. J.; Seifert, F.
The effect of oxygen vacancies and aluminium substitution on the high-pressure properties of brownmillerite-structured Ca2Fe2-xAlxO5 Note: x = 0.0 Note: P = 5.564 GPa
Physics and Chemistry of Minerals, 2008, 35, 493-504
9015721 CIFCu3 H6 O11 V2I 1 a 110.646; 5.867; 14.432
90; 95.19; 90
897.728Kashaev, A. A.; Rozhdestvenskaya, I. V.; Bannova, I. I.; Sapozhnikov, A. N.; Glebova, O. D.
Balance, uniformity, and asymmetry of the structure of volborthite Cu3(OH)2(V2O7)*2H2O
Journal of Structural Chemistry, 2008, 49, 708-711
9015731 CIFAl0.55 Ca2 Fe1.45 O5I 2 m b5.303; 14.3778; 5.529
90; 90; 90
421.561Vanpeteghem, C. B.; Angel, R. J.; Zhao, J.; Ross, N. L.; Redhammer, G. J.; Seifert, F.
The effect of oxygen vacancies and aluminium substitution on the high-pressure properties of brownmillerite-structured Ca2Fe2-xAlxO5 Note: x = 0.55 Note: P = 6.27 GPa
Physics and Chemistry of Minerals, 2008, 35, 493-504
9015766 CIFAs2 Eu Fe2I 4/m m m3.9062; 3.9062; 12.1247
90; 90; 90
185.004Tegel, M.; Rotter, M.; Weiss, V.; Schappacher, F. M.; Pottgen, R.; Johrendt, D.
Structural and magnetic phase transitions in the ternary iron arsenides SrFe2As2 and EuFe2As2 Note: T = 297 K
Journal of Physics: Condensed Matter, 2008, 20, 452201_1-452201_5
9015857 CIFFe0.765 H1.59 K Mg2.235 O12 Si4C 1 2/m 15.3416; 9.2411; 10.2332
90; 99.983; 90
497.486Scordari, F.; Schingaro, E.; Ventruti, G.; Lacalamita, M.; Ottolini, L.
Red micas from basal ignimbrites of Mt. Vulture (Italy): interlayer content appraisal by a multi-methodic approach Note: Sample LC6_R7
Physics and Chemistry of Minerals, 2008, 35, 163-174
9015862 CIFAl0.37 Ca2 Fe1.63 O5P n m a5.4042; 14.6835; 5.5947
90; 90; 90
443.954Vanpeteghem, C. B.; Angel, R. J.; Zhao, J.; Ross, N. L.; Redhammer, G. J.; Seifert, F.
The effect of oxygen vacancies and aluminium substitution on the high-pressure properties of brownmillerite-structured Ca2Fe2-xAlxO5 Note: x = 0.37 Note: P = 0.0001 GPa
Physics and Chemistry of Minerals, 2008, 35, 493-504
9015955 CIFAl0.37 Ca2 Fe1.63 O5P n m a5.3549; 14.541; 5.5524
90; 90; 90
432.341Vanpeteghem, C. B.; Angel, R. J.; Zhao, J.; Ross, N. L.; Redhammer, G. J.; Seifert, F.
The effect of oxygen vacancies and aluminium substitution on the high-pressure properties of brownmillerite-structured Ca2Fe2-xAlxO5 Note: x = 0.37 Note: P = 3.729 GPa
Physics and Chemistry of Minerals, 2008, 35, 493-504
9016003 CIFCl1.45 Pb3.45 S6.55 Sb2.55P b a m15.194; 23.035; 4.0591
90; 90; 90
1420.66Doussier, C.; Moelo, Y.; Meerschaut, A.; Leone, P.; Guillot-Deudon C
Crystal structure of the new compound Pb3+xSb3 xS7 xCl1+x(x~0.45): The homologous series Pb(2+2N)(Sb,Pb)(2+2N)S(2+2N)(S,Cl)(4+2N)ClN and its polychalcogenide derivatives (N = 1-3)
Journal of Solid State Chemistry, 2008, 181, 920-934
9016013 CIFCa2 Fe2 O5P n m a5.4271; 14.7619; 5.5978
90; 90; 90
448.464Vanpeteghem, C. B.; Angel, R. J.; Zhao, J.; Ross, N. L.; Redhammer, G. J.; Seifert, F.
The effect of oxygen vacancies and aluminium substitution on the high-pressure properties of brownmillerite-structured Ca2Fe2-xAlxO5 Note: x = 0.0 Note: P = 0.0001 GPa
Physics and Chemistry of Minerals, 2008, 35, 493-504
9016018 CIFAl0.55 Ca2 Fe1.45 O5I 2 m b5.324; 14.438; 5.545
90; 90; 90
426.233Vanpeteghem, C. B.; Angel, R. J.; Zhao, J.; Ross, N. L.; Redhammer, G. J.; Seifert, F.
The effect of oxygen vacancies and aluminium substitution on the high-pressure properties of brownmillerite-structured Ca2Fe2-xAlxO5 Note: x = 0.55 Note: P = 4.511 GPa
Physics and Chemistry of Minerals, 2008, 35, 493-504
9016125 CIFCa3 O5 SiP -111.6389; 14.1716; 13.6434
104.982; 94.622; 90.107
2166.2De la Torre, A. G.; De Vera, R. N.; Cuberos, A. J. M.; Aranda, M. A. G.
Crystal structure of low magnesium-content alite: application to Rietveld quantitative phase analysis
Cement and Concrete Research, 2008, 38, 1261-1269
9016157 CIFAl0.55 Ca2 Fe1.45 O5I 2 m b5.361; 14.5523; 5.5958
90; 90; 90
436.556Vanpeteghem, C. B.; Angel, R. J.; Zhao, J.; Ross, N. L.; Redhammer, G. J.; Seifert, F.
The effect of oxygen vacancies and aluminium substitution on the high-pressure properties of brownmillerite-structured Ca2Fe2-xAlxO5 Note: x = 0.55 Note: P = 1.49 GPa
Physics and Chemistry of Minerals, 2008, 35, 493-504
9016241 CIFFe0.812 H1.554 K Mg2.188 O12 Si4C 1 2/m 15.34; 9.2376; 10.2414
90; 100.014; 90
497.499Scordari, F.; Schingaro, E.; Ventruti, G.; Lacalamita, M.; Ottolini, L.
Red micas from basal ignimbrites of Mt. Vulture (Italy): interlayer content appraisal by a multi-methodic approach Note: Sample LC6_R29
Physics and Chemistry of Minerals, 2008, 35, 163-174
9016247 CIFCa2 Fe2 O5P n m a5.3035; 14.4389; 5.4979
90; 90; 90
421.011Vanpeteghem, C. B.; Angel, R. J.; Zhao, J.; Ross, N. L.; Redhammer, G. J.; Seifert, F.
The effect of oxygen vacancies and aluminium substitution on the high-pressure properties of brownmillerite-structured Ca2Fe2-xAlxO5 Note: x = 0.0 Note: P = 9.73 GPa
Physics and Chemistry of Minerals, 2008, 35, 493-504
9016290 CIFCd0.002 Cu0.005 Fe0.023 In0.002 S Zn0.968F -4 3 m5.4159; 5.4159; 5.4159
90; 90; 90
158.859Nitta, E.; Kimata, M.; Hoshino, M.; Echigo, T.; Hamasaki, S.; Nishida, N.; Shimizu, M.; Akasak, T.
Crystal chemistry of ZnS minerals formed as high-temperature volcanic sublimates: matraite identical with sphalerite
Journal of Mineralogical and Petrological Sciences, 2008, 103, 145-151
9016294 CIFAs0.04 B3 Ca2.53 F14 Fe0.83 Mn0.93 Na1.17 Nd7.53 O34 P0.7 Pb0.03 Si6.26 Th0.09 Ti0.02 Y3.72R 3 m :H10.7527; 10.7527; 27.4002
90; 90; 120
2743.59Raade, G.; Grice, J. D.; Erambert, M.; Kristiansson, P.; Witzke, T.
Proshchenkoite-(Y) from Russia - a new mineral species in the vicanite group: Descriptive data and crystal structure
Mineralogical Magazine, 2008, 72, 1071-1082
9016344 CIFFe1.1 H0.24 K Mg1.9 O12 Si4C 1 2/m 15.3269; 9.222; 10.129
90; 100.027; 90
489.984Scordari, F.; Schingaro, E.; Ventruti, G.; Lacalamita, M.; Ottolini, L.
Red micas from basal ignimbrites of Mt. Vulture (Italy): interlayer content appraisal by a multi-methodic approach Note: Sample LC7_R5
Physics and Chemistry of Minerals, 2008, 35, 163-174
9016374 CIFAs2 Fe2 SrI 4/m m m3.9243; 3.9243; 12.3644
90; 90; 90
190.413Tegel, M.; Rotter, M.; Weiss, V.; Schappacher, F. M.; Pottgen, R.; Johrendt, D.
Structural and magnetic phase transitions in the ternary iron arsenides SrFe2As2 and EuFe2As2 Note: T = 297 K
Journal of Physics: Condensed Matter, 2008, 20, 452201_1-452201_5
9016384 CIFAl0.03 Ba0.87 Ca0.02 F0.65 Fe0.11 H0.89 K0.2 Mg0.04 Mn0.4 Na2.84 Nb0.04 O17.35 Si4 Sr0.47 Ti2.82P n m n19.564; 7.1173; 5.4144
90; 90; 90
753.917Sokolova, E.; Hawthorne, F. C.
From structure topology to chemical composition. IV. Titanium silicates: The orthorhombic polytype of nabalamprophyllite from Lovozero Massif, Kola Peninsula, Russia Note: polytype nabalamprophyllite-2O
The Canadian Mineralogist, 2008, 46, 1323-1331
9016470 CIFAl0.37 Ca2 Fe1.63 O5P n m a5.3246; 14.4558; 5.5273
90; 90; 90
425.444Vanpeteghem, C. B.; Angel, R. J.; Zhao, J.; Ross, N. L.; Redhammer, G. J.; Seifert, F.
The effect of oxygen vacancies and aluminium substitution on the high-pressure properties of brownmillerite-structured Ca2Fe2-xAlxO5 Note: x = 0.37 Note: P = 6.267 GPa
Physics and Chemistry of Minerals, 2008, 35, 493-504
9016523 CIFAs2 Fe2 SrF m m m5.5783; 5.5175; 12.2965
90; 90; 90
378.465Tegel, M.; Rotter, M.; Weiss, V.; Schappacher, F. M.; Pottgen, R.; Johrendt, D.
Structural and magnetic phase transitions in the ternary iron arsenides SrFe2As2 and EuFe2As2 Note: T = 90 K
Journal of Physics: Condensed Matter, 2008, 20, 452201_1-452201_5
9016594 CIFFe0.665 H1.072 K Mg2.335 O12 Si4C 1 2/m 15.3369; 9.2355; 10.2267
90; 100.05; 90
496.329Scordari, F.; Schingaro, E.; Ventruti, G.; Lacalamita, M.; Ottolini, L.
Red micas from basal ignimbrites of Mt. Vulture (Italy): interlayer content appraisal by a multi-methodic approach Note: Sample LC7_R2
Physics and Chemistry of Minerals, 2008, 35, 163-174
9016627 CIFCl Cu2 D3 O3P 1 21/n 16.15175; 6.81606; 9.10541
90; 99.8394; 90
376.18Wills, A. S.; Henry, J. Y.
On the crystal and magnetic ordering structures of clinoatacamite, gamma-Cu2(OD)3Cl, a proposed valence bond solid
Journal of Physics: Condensed Matter, 2008, 20, 472206-472208
9016628 CIFCa2 Fe2 O5P n m a5.3744; 14.6175; 5.5526
90; 90; 90
436.214Vanpeteghem, C. B.; Angel, R. J.; Zhao, J.; Ross, N. L.; Redhammer, G. J.; Seifert, F.
The effect of oxygen vacancies and aluminium substitution on the high-pressure properties of brownmillerite-structured Ca2Fe2-xAlxO5 Note: x = 0.0 Note: P = 3.863 GPa
Physics and Chemistry of Minerals, 2008, 35, 493-504

Blue left arrow Blue left arrow First | Blue left arrow Previous 500 | of 39 | Next 500 Blue right arrow | Last Blue right arrow Blue right arrow | Display 5 20 50 100 200 300 500 1000 entries per page

Back to the search form
Your own data is not in the COD? Deposit it, thanks!