Crystallography Open Database

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1010202 CIFAg Au Cl6 Cs2I 4/m m m7.38; 7.38; 11.01
90; 90; 90
599.7Elliott, N; Pauling, L
The Crystal Structure of Cesium Aurous Auric Chloride, Cs~2~ Au Au Cl~6~, and Cesium Argentous Auric Chloride, Cs~2~ Ag Au Cl~6~
Journal of the American Chemical Society, 1938, 60, 1846-1851
4119062 CIFAg Ba0.67 K0.33 Te2I 4/m m m4.624; 4.624; 23.326
90; 90; 90
498.742Kannewurf, C.R.; Kanatzidis, M.G.; Guo, H.-Y.; Zhang, X.; Hogan, T.; Li, J.; Lee, S.; Foran, B.
Distorted square nets of tellurium in the novel quaternary polytelluride K0.33 Ba0.67 Ag Te2
Journal of the American Chemical Society, 1995, 117, 10513-10520
4131244 CIFAg Bi Br6 Cs2F m -3 m11.2322; 11.2322; 11.2322
90; 90; 90
1417.08Slavney, Adam H.; Leppert, Linn; Bartesaghi, Davide; Gold-Parker, Aryeh; Toney, Michael F.; Savenije, Tom J.; Neaton, Jeffrey B.; Karunadasa, Hemamala I.
Defect-Induced Band-Edge Reconstruction of a Bismuth-Halide Double Perovskite for Visible-Light Absorption.
Journal of the American Chemical Society, 2017, 139, 5015-5018
6000558 CIFAg F3P 61 2 25.0782; 5.0782; 15.4524
90; 90; 120
345.1Zemva, B.; Lutar, K.; Jesih, A.; Casteel, W. J.; Wilkinson, A. P.; Cox, D. E.; Vondreele, R. B.; Borrmann, H.; Bartlett, N.
Silver trifluoride - preparation, crystal-structure, some properties, and comparison with AuF3
Journal of The American Chemical Society, 1991, 113, 4192-4198
4119063 CIFAg F3 ZnP m -3 m3.89; 3.89; 3.89
90; 90; 90
58.864Roy, R.; de Vries, R.C.
Fluoride Models for Oxide Systems of Dielectric Interest. The Systems K F - Mg F2 and Ag F - Zn F2
Journal of the American Chemical Society, 1953, 75, 2479-2484
4120041 CIFAg F4 Li O4 V2P 1 2/c 19.9951; 5.6771; 4.868
90; 90.596; 90
276.211Martin D. Donakowski; Arno Görne; John T. Vaughey; Kenneth R. Poeppelmeier
AgNa(VO2F2)2: A Trioxovanadium Fluoride with Unconventional Electrochemical Properties
Journal of the American Chemical Society, 2013, 135, 9898-9906
4120040 CIFAg F4 Na O4 V2P 1 2/c 110.3826; 5.8079; 4.9429
90; 90.072; 90
298.06Martin D. Donakowski; Arno Görne; John T. Vaughey; Kenneth R. Poeppelmeier
AgNa(VO2F2)2: A Trioxovanadium Fluoride with Unconventional Electrochemical Properties
Journal of the American Chemical Society, 2013, 135, 9898-9906
4111757 CIFAg Fe3 H6 O14 S2R -3 m :H7.33; 7.33; 16.497
90; 90; 120
767.62Bart M. Bartlett; Daniel G. Nocera
Long-Range Magnetic Ordering in Iron Jarosites Prepared by Redox-Based Hydrothermal Methods
Journal of the American Chemical Society, 2005, 127, 8985-8993
4111782 CIFAg Sb Te2P m -3 m6.0667; 6.0667; 6.0667
90; 90; 90
223.28Eric Quarez; Kuei-Fang Hsu; Robert Pcionek; N. Frangis; E. K. Polychroniadis; Mercouri G. Kanatzidis
Nanostructuring, Compositional Fluctuations, and Atomic Ordering in the Thermoelectric Materials AgPbmSbTe2+m. The Myth of Solid Solutions
Journal of the American Chemical Society, 2005, 127, 9177-9190
4111783 CIFAg Sb Te2P 4/m m m4.2898; 4.2898; 6.0667
90; 90; 90
111.64Eric Quarez; Kuei-Fang Hsu; Robert Pcionek; N. Frangis; E. K. Polychroniadis; Mercouri G. Kanatzidis
Nanostructuring, Compositional Fluctuations, and Atomic Ordering in the Thermoelectric Materials AgPbmSbTe2+m. The Myth of Solid Solutions
Journal of the American Chemical Society, 2005, 127, 9177-9190
4111784 CIFAg Sb Te2R -3 m :H4.2898; 4.2898; 21.016
90; 90; 120
334.93Eric Quarez; Kuei-Fang Hsu; Robert Pcionek; N. Frangis; E. K. Polychroniadis; Mercouri G. Kanatzidis
Nanostructuring, Compositional Fluctuations, and Atomic Ordering in the Thermoelectric Materials AgPbmSbTe2+m. The Myth of Solid Solutions
Journal of the American Chemical Society, 2005, 127, 9177-9190
4111792 CIFAg0.13 Pb1.75 Sb0.13 Te2P 4/m m m4.5538; 4.5538; 6.4404
90; 90; 90
133.56Eric Quarez; Kuei-Fang Hsu; Robert Pcionek; N. Frangis; E. K. Polychroniadis; Mercouri G. Kanatzidis
Nanostructuring, Compositional Fluctuations, and Atomic Ordering in the Thermoelectric Materials AgPbmSbTe2+m. The Myth of Solid Solutions
Journal of the American Chemical Society, 2005, 127, 9177-9190
4111790 CIFAg0.19 Pb1.62 Sb0.19 Te2P 4/m m m4.5453; 4.5453; 6.428
90; 90; 90
132.8Eric Quarez; Kuei-Fang Hsu; Robert Pcionek; N. Frangis; E. K. Polychroniadis; Mercouri G. Kanatzidis
Nanostructuring, Compositional Fluctuations, and Atomic Ordering in the Thermoelectric Materials AgPbmSbTe2+m. The Myth of Solid Solutions
Journal of the American Chemical Society, 2005, 127, 9177-9190
4119061 CIFAg0.24 Al6 Br1.88 Na7.76 O24 Si6P -4 3 n8.9289; 8.9289; 8.9289
90; 90; 90
711.859Ozin, G.A.; MacDonald, P.M.; Stucky, G.D.; Stein, A.; Jelinek, R.
Silver, sodium halosodalites: class A sodalites
Journal of the American Chemical Society, 1992, 114, 5171-5186
4111788 CIFAg0.25 Pb1.5 Sb0.25 Te2P 4/m m m4.5377; 4.5377; 6.4173
90; 90; 90
132.14Eric Quarez; Kuei-Fang Hsu; Robert Pcionek; N. Frangis; E. K. Polychroniadis; Mercouri G. Kanatzidis
Nanostructuring, Compositional Fluctuations, and Atomic Ordering in the Thermoelectric Materials AgPbmSbTe2+m. The Myth of Solid Solutions
Journal of the American Chemical Society, 2005, 127, 9177-9190
4111791 CIFAg0.25 Pb3.5 Sb0.25 Te4P m -3 m6.4404; 6.4404; 6.4404
90; 90; 90
267.14Eric Quarez; Kuei-Fang Hsu; Robert Pcionek; N. Frangis; E. K. Polychroniadis; Mercouri G. Kanatzidis
Nanostructuring, Compositional Fluctuations, and Atomic Ordering in the Thermoelectric Materials AgPbmSbTe2+m. The Myth of Solid Solutions
Journal of the American Chemical Society, 2005, 127, 9177-9190
4111789 CIFAg0.38 Pb3.23 Sb0.38 Te4P m -3 m6.428; 6.428; 6.428
90; 90; 90
265.6Eric Quarez; Kuei-Fang Hsu; Robert Pcionek; N. Frangis; E. K. Polychroniadis; Mercouri G. Kanatzidis
Nanostructuring, Compositional Fluctuations, and Atomic Ordering in the Thermoelectric Materials AgPbmSbTe2+m. The Myth of Solid Solutions
Journal of the American Chemical Society, 2005, 127, 9177-9190
4111787 CIFAg0.5 Pb3 Sb0.5 Te4P m -3 m6.4173; 6.4173; 6.4173
90; 90; 90
264.28Eric Quarez; Kuei-Fang Hsu; Robert Pcionek; N. Frangis; E. K. Polychroniadis; Mercouri G. Kanatzidis
Nanostructuring, Compositional Fluctuations, and Atomic Ordering in the Thermoelectric Materials AgPbmSbTe2+m. The Myth of Solid Solutions
Journal of the American Chemical Society, 2005, 127, 9177-9190
4111786 CIFAg0.67 Pb0.67 Sb0.67 Te2P 4/m m m4.3963; 4.3963; 6.2173
90; 90; 90
120.16Eric Quarez; Kuei-Fang Hsu; Robert Pcionek; N. Frangis; E. K. Polychroniadis; Mercouri G. Kanatzidis
Nanostructuring, Compositional Fluctuations, and Atomic Ordering in the Thermoelectric Materials AgPbmSbTe2+m. The Myth of Solid Solutions
Journal of the American Chemical Society, 2005, 127, 9177-9190
4120251 CIFAg0.86 Ca0.87 Pr0.14 SbP 63 m c4.7057; 4.7057; 7.788
90; 90; 120
149.35Jian Wang; Xiao-Cun Liu; Sheng-Qing Xia; Xu-Tang Tao
Ca1-xRExAg1-ySb (RE = La, Ce, Pr, Nd, Sm; 0 <=x<=1; 0 <=y<=1): Interesting Structural Transformation and Enhanced High-Temperature Thermoelectric Performance
Journal of the American Chemical Society, 2013, 135, 11840-11848
4120252 CIFAg0.87 Ca0.86 Nd0.14 SbP 63 m c4.6931; 4.6931; 7.753
90; 90; 120
147.88Jian Wang; Xiao-Cun Liu; Sheng-Qing Xia; Xu-Tang Tao
Ca1-xRExAg1-ySb (RE = La, Ce, Pr, Nd, Sm; 0 <=x<=1; 0 <=y<=1): Interesting Structural Transformation and Enhanced High-Temperature Thermoelectric Performance
Journal of the American Chemical Society, 2013, 135, 11840-11848
4120253 CIFAg0.88 Ca0.83 Sb Sm0.17P 63 m c4.7008; 4.7008; 7.759
90; 90; 120
148.48Jian Wang; Xiao-Cun Liu; Sheng-Qing Xia; Xu-Tang Tao
Ca1-xRExAg1-ySb (RE = La, Ce, Pr, Nd, Sm; 0 <=x<=1; 0 <=y<=1): Interesting Structural Transformation and Enhanced High-Temperature Thermoelectric Performance
Journal of the American Chemical Society, 2013, 135, 11840-11848
4120250 CIFAg0.9 Ca0.84 Ce0.16 SbP 63 m c4.7023; 4.7023; 7.7951
90; 90; 120
149.27Jian Wang; Xiao-Cun Liu; Sheng-Qing Xia; Xu-Tang Tao
Ca1-xRExAg1-ySb (RE = La, Ce, Pr, Nd, Sm; 0 <=x<=1; 0 <=y<=1): Interesting Structural Transformation and Enhanced High-Temperature Thermoelectric Performance
Journal of the American Chemical Society, 2013, 135, 11840-11848
4120249 CIFAg0.92 Ca0.89 La0.11 SbP 63 m c4.7029; 4.7029; 7.7921
90; 90; 120
149.25Jian Wang; Xiao-Cun Liu; Sheng-Qing Xia; Xu-Tang Tao
Ca1-xRExAg1-ySb (RE = La, Ce, Pr, Nd, Sm; 0 <=x<=1; 0 <=y<=1): Interesting Structural Transformation and Enhanced High-Temperature Thermoelectric Performance
Journal of the American Chemical Society, 2013, 135, 11840-11848
4120248 CIFAg0.93 Ca0.91 La0.09 SbC m c 214.7028; 8.146; 7.7921
90; 90; 90
298.51Jian Wang; Xiao-Cun Liu; Sheng-Qing Xia; Xu-Tang Tao
Ca1-xRExAg1-ySb (RE = La, Ce, Pr, Nd, Sm; 0 <=x<=1; 0 <=y<=1): Interesting Structural Transformation and Enhanced High-Temperature Thermoelectric Performance
Journal of the American Chemical Society, 2013, 135, 11840-11848
4111785 CIFAg1.33 Pb1.33 Sb1.33 Te4P m -3 m6.2173; 6.2173; 6.2173
90; 90; 90
240.33Eric Quarez; Kuei-Fang Hsu; Robert Pcionek; N. Frangis; E. K. Polychroniadis; Mercouri G. Kanatzidis
Nanostructuring, Compositional Fluctuations, and Atomic Ordering in the Thermoelectric Materials AgPbmSbTe2+m. The Myth of Solid Solutions
Journal of the American Chemical Society, 2005, 127, 9177-9190
4117413 CIFAg1.5 F3 Mo Na1.5 O3R -3 :H5.754547; 5.754547; 28.503915
90; 90; 120
817.443Allyson M. Fry; Harry A. Seibel; Indunil N. Lokuhewa; Patrick M. Woodward
Na1.5Ag1.5MO3F3(M = Mo, W): An Ordered Oxyfluoride Derivative of the LiNbO3Structure
Journal of the American Chemical Society, 2012, 134, 2621-2625
4117414 CIFAg1.5 F3 Na1.5 O3 WR -3 :H5.741466; 5.741466; 28.63794
90; 90; 120
817.557Allyson M. Fry; Harry A. Seibel; Indunil N. Lokuhewa; Patrick M. Woodward
Na1.5Ag1.5MO3F3(M = Mo, W): An Ordered Oxyfluoride Derivative of the LiNbO3Structure
Journal of the American Chemical Society, 2012, 134, 2621-2625
4119064 CIFAg11.48 Al12 O48 Si12P m -3 m12.248; 12.248; 12.248
90; 90; 90
1837.36Kim, Y.; Seff, K.
The octahedral hexasilver molecule. Seven crystal structures of variously vacuum-dehydrated fully Ag+ -exchanged zeolite A
Journal of the American Chemical Society, 1978, 100, 6989-6997
4119065 CIFAg11.888 Al12 O48 Si12P m -3 m12.333; 12.333; 12.333
90; 90; 90
1875.89Seff, K.; Kim, Y.
The octahedral hexasilver molecule. Seven crystal structures of variously vacuum-dehydrated fully Ag+ -exchanged zeolite A
Journal of the American Chemical Society, 1978, 100, 6989-6997
4124443 CIFAg12 Al12 Cl14.248 H2.25 O48 Si12P m -3 m12.244; 12.244; 12.244
90; 90; 90
1835.57Kim, Y.; Seff, K.
Oxidation of hexasilver to silver chloride by dichlorine. Crystal structure of H2.25 Ag12 Cl2.25 Si12 Al12 O48 * (Cl2)6 a chlorine sorption complex of partially dehydrated fully Ag+ -exchanged ...
Journal of the American Chemical Society, 1978, 100, 3801-3805
4119066 CIFAg12 Al12 O48 Si12P m -3 m12.295; 12.295; 12.295
90; 90; 90
1858.6Kim, Y.; Seff, K.
Structure of a very small piece of silver metal. The octahedral Ag6 molecule. Two crystal structures of partially decomposed vacuum-dehydrated fully Ag+ -exchanged zeolite A
Journal of the American Chemical Society, 1977, 99, 7055-7057
4108613 CIFAg2 Ba2 O2 Se2 Zn0.953C m c a19.8377; 6.0562; 6.057
90; 90; 90
727.69Sebastian J. C. Herkelrath; Ian Saratovsky; Joke Hadermann; Simon J. Clarke
Fragmentation of an Infinite ZnO2 Square Plane into Discrete [ZnO2]2- Linear Units in the Oxyselenide Ba2ZnO2Ag2Se2
Journal of the American Chemical Society, 2008, 130, 14426-14427
4108614 CIFAg2 Ba2 O2 Se2 Zn0.955I 4/m m m4.2849; 4.2849; 19.8793
90; 90; 90
364.99Sebastian J. C. Herkelrath; Ian Saratovsky; Joke Hadermann; Simon J. Clarke
Fragmentation of an Infinite ZnO2 Square Plane into Discrete [ZnO2]2- Linear Units in the Oxyselenide Ba2ZnO2Ag2Se2
Journal of the American Chemical Society, 2008, 130, 14426-14427
4119067 CIFAg2 Ca1.5 Nb3 O10I 4/m m m3.8994; 3.8994; 29.015
90; 90; 90
441.182Woodward, P.M.; Bhuvanesh, N.S.P.
Thermally induced A' - A site exchange in novel layered perovskitesAg2 (Ca1.5 M3 O10) (M = Nb, Ta)
Journal of the American Chemical Society, 2002, 124, 14294-14295
4119068 CIFAg2 Cs2 Te4 ZrC 2 2 26.508; 15.164; 6.518
90; 90; 90
643.244Ibers, J.A.; Pell, M.A.
Cs2 Ag2 Zr Te4 : a new layered telluride containing tetrahedrally coordinated zirconium
Journal of the American Chemical Society, 1995, 117, 6284-6286
1010623 CIFAg2 Mo O4F d -3 m :19.26; 9.26; 9.26
90; 90; 90
794Wyckoff, R W G
The crystal structure of silver molybdate
Journal of the American Chemical Society, 1922, 44, 1994-1997
4124775 CIFAg2 Mo O4F d -3 m :19.26; 9.26; 9.26
90; 90; 90
794.023Donohue, J.; Shand, W.
The determination of the interatomic distances in silver molybdate, Ag2 Mo O4
Journal of the American Chemical Society, 1947, 69, 222-223
4112388 CIFAg3 Li17 Sn6P 3 1 m8.063; 8.063; 8.51
90; 90; 120
479.1Corina Lupu; Craig Downie; Arnold M. Guloy; Thomas A. Albright; Jiang-Gao Mao
Li17Ag3Sn6: A Polar Intermetallic π-System with Carbonate-like [AgSn3]11- Anions and Trefoil Aromatic [Ag2Sn3]6- Layers
Journal of the American Chemical Society, 2004, 126, 4386-4397
4111653 CIFAg4 F2 O6 V2P 1 21/n 15.5937; 10.5483; 12.4593
90; 90.314; 90
735.14Erin M. Sorensen; Heather K. Izumi; John T. Vaughey; Charlotte L. Stern; Kenneth R. Poeppelmeier
Ag4V2O6F2: An Electrochemically Active and High Silver Density Phase
Journal of the American Chemical Society, 2005, 127, 6347-6352
4115680 CIFAg4 I4 O24 U4P 1 21/n 115.04; 8.051; 18.332
90; 100.738; 90
2180.9Amanda C. Bean; Charles F. Campana; Ohyun Kwon; Thomas E. Albrecht-Schmitt
A New Oxoanion: [IO4]3- Containing I(V) with a Stereochemically Active Lone-Pair in the Silver Uranyl Iodate Tetraoxoiodate(V), Ag4(UO2)4(IO3)2(IO4)2O2
Journal of the American Chemical Society, 2001, 123, 8806-8810
4124777 CIFAg66.31 Al96.9 H27 O384 Si96F m -3 c24.548; 24.548; 24.548
90; 90; 90
14792.7Gellens, L.R.; Pluth, J.J.; Smith, J.V.
Crystal structure of vacuum-dehydrated silver hydrogen zeolite A
Journal of the American Chemical Society, 1983, 105, 51-55
4124444 CIFAg7.48 Al12 O48 Si12P m -3 m12.279; 12.279; 12.279
90; 90; 90
1851.35Kim, Y.; Seff, K.
The octahedral hexasilver molecule. Seven crystal structures of variously vacuum-dehydrated fully Ag+ -exchanged zeolite A
Journal of the American Chemical Society, 1978, 100, 6989-6997
4124442 CIFAg8 Al12 H45 N27 O48 Si12P m -3 m12.295; 12.295; 12.295
90; 90; 90
1858.6Kim, Y.; Gilje, J.W.; Seff, K.
Synthesis and structures of two new hydrides of nitrogen, triazane (N3 H5) and cyclotriazane (N3 H3). Crystallographic ... analyses of vacuum-dehydrated patially decomposed fully Ag+ -exchanged Zeolite A ...
Journal of the American Chemical Society, 1977, 99, 7057-7059
4119069 CIFAg9.26 Al12 O48 Si12P m -3 m12.148; 12.148; 12.148
90; 90; 90
1792.73Kim, Y.; Seff, K.
The octahedral hexasilver molecule. Seven crystal structures of variously vacuum-dehydrated fully Ag+ -exchanged zeolite A
Journal of the American Chemical Society, 1978, 100, 6989-6997
4105867 CIFAl B5 H38 Li2 N6P -3 c 17.79779; 7.79779; 15.96933
90; 90; 120
840.931Yanhui Guo; Hui Wu; Wei Zhou; Xuebin Yu
Dehydrogenation Tuning of Ammine Borohydrides Using Double-Metal Cations
Journal of the American Chemical Society, 2011, 133, 4690-4693
4120551 CIFAl Ba N5 O3 Si4A 21 a m9.48461; 13.47194; 5.773234
90; 90; 90
737.681Park, Woon Bae; Singh, Satendra Pal; Sohn, Kee-Sun
Discovery of a phosphor for light emitting diode applications and its structural determination, ba(si,al)5(o,n)8:eu(2+).
Journal of the American Chemical Society, 2014, 136, 2363-2373
4135474 CIFAl Bi11 Ca13.9 La0.1I 41/a c d :217.029; 17.029; 22.689
90; 90; 90
6579.5Baranets, Sviatoslav; Bobev, Svilen
Caught in Action. The Late Rare Earths Thulium and Lutetium Substituting Aluminum Atoms in the Structure of Ca14AlBi11
Journal of the American Chemical Society, 2020
4103367 CIFAl Bi2 Br Cl4 Te2C 1 2/c 121.2247; 8.4778; 13.2264
90; 99.28; 90
2348.8Kanishka Biswas; Qichun Zhang; In Chung; Jung-Hwan Song; John Androulakis; Arthur J. Freeman; Mercouri G. Kanatzidis
Synthesis in Ionic Liquids: [Bi2Te2Br](AlCl4), a Direct Gap Semiconductor with a Cationic Framework
Journal of the American Chemical Society, 2010, 132, 14760-14762
4103366 CIFAl Br Cl4 Sb2 Te2C 1 2/c 121.216; 8.2816; 13.126
90; 98.71; 90
2279.7Kanishka Biswas; Qichun Zhang; In Chung; Jung-Hwan Song; John Androulakis; Arthur J. Freeman; Mercouri G. Kanatzidis
Synthesis in Ionic Liquids: [Bi2Te2Br](AlCl4), a Direct Gap Semiconductor with a Cationic Framework
Journal of the American Chemical Society, 2010, 132, 14760-14762
4124695 CIF
HKL
Al Ca4 Mg1.5 O14 Si3.5P -4 21 m7.79644; 7.79644; 5.0119
90; 90; 90
304.65Zhiguo Xia; C.-G. Ma; Maxim Molokeev; Quanlin Liu; Karl Rickert; Kenneth Poeppelmeier
Chemical Unit Cosubstitution and Tuning of Photoluminescence in the Ca2(Al1-xMgx)(Al1-xSi1+x)O7:Eu2+ Phosphor
Journal of the American Chemical Society, 2015, 137, 12494-12497
4124466 CIFAl Cs0.69 I14 Zr6C m c a15.907; 14.284; 12.973
90; 90; 90
2947.67Smith, J.D.; Corbett, J.D.
Four zirconium iodide cluster phases centered by boron, aluminum, or silicon
Journal of the American Chemical Society, 1986, 108, 1927-1934
4124633 CIFAl F1.5 H2.25 O1.875F d -3 m :19.829; 9.829; 9.829
90; 90; 90
949.572Cowley, J.M.; Scott, R.T.
Basic Fluorides of Aluminum
Journal of the American Chemical Society, 1948, 70, 105-109
1010086 CIFAl F6 H12 N3F -4 3 m8.4; 8.4; 8.4
90; 90; 90
592.7Pauling, L
The Crystal Structures of Ammonium Fluoferrate, Fluoaluminate and Oxyfluomolybdate
Journal of the American Chemical Society, 1924, 46, 2738-2751
4116390 CIFAl K5 O57 W12P 62 2 219.072; 19.072; 12.5658
90; 90; 120
3958.34Ira A. Weinstock; Jennifer J. Cowan; Elena M. G. Barbuzzi; Huadong Zeng; Craig L. Hill
Equilibria between α and β Isomers of Keggin Heteropolytungstates
Journal of the American Chemical Society, 1999, 121, 4608-4617
4125060 CIFAl Nd9.906 O26 Si5P 63/m9.553; 9.553; 7.0496
90; 90; 120
557.153An, Tao; Baikie, Tom; Orera, Alodia; Piltz, Ross O.; Meven, Martin; Slater, Peter R.; Wei, Jun; Sanjuán, María L; White, T. J.
Interstitial Oxide Ion Distribution and Transport Mechanism in Aluminum-Doped Neodymium Silicate Apatite Electrolytes.
Journal of the American Chemical Society, 2016, 138, 4468-4483
4124784 CIFAl OF m -3 m5.67; 5.67; 5.67
90; 90; 90
182.284Hoch, M.; Johnston, H.L.
Formation, Stability and Crystal Structure of the Solid Aluminium Suboxides. Al2 O and Al O
Journal of the American Chemical Society, 1954, 76, 2560-2561
4123961 CIFAl O4 PP -18.784; 8.784; 12.85
110.43; 98.5; 104.92
866.319Loiseau, T.; Mellot-Draznieks, C.; Taulelle, F.; Girard, S.; Sassoye, C.; Ferey, G.; Huguenard, C.; Guillou, N.
Chemistry - structure - simulation or chemistry - simulation - structure sequences? the case of MIL-34, a new porous aluminophosphate
Journal of the American Chemical Society, 2001, 123, 9642-9651
4118799 CIF
HKL
Al0.1 Na0.09 O Si0.4I -4 3 m14.41336; 14.41336; 14.41336
90; 90; 90
2994.3Magdalena M. Lozinska; Enzo Mangano; John P. S. Mowat; Ashley M. Shepherd; Russell F. Howe; Stephen P. Thompson; Julia E. Parker; Stefano Brandani; Paul A. Wright
Understanding Carbon Dioxide Adsorption on Univalent Cation Forms of the Flexible Zeolite Rho at Conditions Relevant to Carbon Capture from Flue Gases
Journal of the American Chemical Society, 2012, 134, 17628-17642
4125061 CIFAl0.5 Nd9.652 O26 Si5.5P 63/m9.5515; 9.5515; 7.042
90; 90; 120
556.378An, Tao; Baikie, Tom; Orera, Alodia; Piltz, Ross O.; Meven, Martin; Slater, Peter R.; Wei, Jun; Sanjuán, María L; White, T. J.
Interstitial Oxide Ion Distribution and Transport Mechanism in Aluminum-Doped Neodymium Silicate Apatite Electrolytes.
Journal of the American Chemical Society, 2016, 138, 4468-4483
4135471 CIFAl0.85 Bi11 Ca13.96 Lu0.18I 41/a c d :217.0165; 17.0165; 22.73
90; 90; 90
6581.7Baranets, Sviatoslav; Bobev, Svilen
Caught in Action. The Late Rare Earths Thulium and Lutetium Substituting Aluminum Atoms in the Structure of Ca14AlBi11
Journal of the American Chemical Society, 2020
4135472 CIFAl0.86 Bi11 Ca13.95 Lu0.19I 41/a c d :217.026; 17.026; 22.735
90; 90; 90
6590.5Baranets, Sviatoslav; Bobev, Svilen
Caught in Action. The Late Rare Earths Thulium and Lutetium Substituting Aluminum Atoms in the Structure of Ca14AlBi11
Journal of the American Chemical Society, 2020
4135470 CIFAl0.88 Bi11 Ca13.95 Lu0.17I 41/a c d :217.0115; 17.0115; 22.696
90; 90; 90
6568Baranets, Sviatoslav; Bobev, Svilen
Caught in Action. The Late Rare Earths Thulium and Lutetium Substituting Aluminum Atoms in the Structure of Ca14AlBi11
Journal of the American Chemical Society, 2020
4135469 CIFAl0.89 Bi11 Ca13.95 Lu0.16I 41/a c d :217.0092; 17.0092; 22.7001
90; 90; 90
6567.4Baranets, Sviatoslav; Bobev, Svilen
Caught in Action. The Late Rare Earths Thulium and Lutetium Substituting Aluminum Atoms in the Structure of Ca14AlBi11
Journal of the American Chemical Society, 2020
4135468 CIFAl0.9 Bi11 Ca13.94 Lu0.16I 41/a c d :216.9893; 16.9893; 22.6602
90; 90; 90
6540.6Baranets, Sviatoslav; Bobev, Svilen
Caught in Action. The Late Rare Earths Thulium and Lutetium Substituting Aluminum Atoms in the Structure of Ca14AlBi11
Journal of the American Chemical Society, 2020
4135473 CIFAl0.93 Bi11 Ca13.91 Tm0.17I 41/a c d :217.019; 17.019; 22.714
90; 90; 90
6579Baranets, Sviatoslav; Bobev, Svilen
Caught in Action. The Late Rare Earths Thulium and Lutetium Substituting Aluminum Atoms in the Structure of Ca14AlBi11
Journal of the American Chemical Society, 2020
4125057 CIFAl1.5 Nd9.959 O26 Si4.5P 63/m9.5611; 9.5611; 7.0607
90; 90; 120
558.977An, Tao; Baikie, Tom; Orera, Alodia; Piltz, Ross O.; Meven, Martin; Slater, Peter R.; Wei, Jun; Sanjuán, María L; White, T. J.
Interstitial Oxide Ion Distribution and Transport Mechanism in Aluminum-Doped Neodymium Silicate Apatite Electrolytes.
Journal of the American Chemical Society, 2016, 138, 4468-4483
4120618 CIFAl1.67 Au7.33 Sr2C 1 2/c 114.956; 8.5641; 8.6718
90; 123.86; 90
922.3Palasyuk, Andriy; Grin, Yuri; Miller, Gordon J.
Turning Gold into "Diamond": A Family of Hexagonal Diamond-Type Au-Frameworks Interconnected by Triangular Clusters in the Sr-Al-Au System.
Journal of the American Chemical Society, 2014, 136, 3108
4120617 CIFAl1.95 Au5.05 SrP n m a8.9424; 7.232; 9.9182
90; 90; 90
641.42Palasyuk, Andriy; Grin, Yuri; Miller, Gordon J.
Turning Gold into "Diamond": A Family of Hexagonal Diamond-Type Au-Frameworks Interconnected by Triangular Clusters in the Sr-Al-Au System.
Journal of the American Chemical Society, 2014, 136, 3108
4124702 CIFAl12 Ca3.4 D5.2 O96 Si36I -4 3 m13.9645; 13.9645; 13.9645
90; 90; 90
2723.18Corbin, D.R.; Abrams, L.; Stucky, G.D.; Jones, G.A.; Eddy, M.M.; Harrison, W.T.A.; Cox, D.E.
Flexibility of the zeolite RHO framework. In situ X-ray and neutron powder structural characterization of divalent cation-exchanged zeolite RHO
Journal of the American Chemical Society, 1990, 112, 4821-4830
4124701 CIFAl12 Ca3.948 O96 Si36I -4 3 m14.11; 14.11; 14.11
90; 90; 90
2809.19Corbin, D.R.; Abrams, L.; Stucky, G.D.; Eddy, M.M.; Harrison, W.T.A.; Jones, G.A.; Cox, D.E.
Flexibility of the zeolite RHO framework. In situ X-ray and neutron powder structural characterization of divalent cation-exchanged zeolite RHO
Journal of the American Chemical Society, 1990, 112, 4821-4830
4124433 CIFAl12 Ca6 O48 Si12P m -3 m12.278; 12.278; 12.278
90; 90; 90
1850.9Firor, R.L.; Seff, K.
Near zero coordinate Ca2+ and Sr2+ in zeolite A. Crystal structures of dehydrated Ca6-A and Sr6-A
Journal of the American Chemical Society, 1978, 100, 3091-3096
4124797 CIFAl12 Cd6 H6 O51 Si12P m -3 m12.291; 12.291; 12.291
90; 90; 90
1856.79McCusker, L.B.; Seff, K.
Cadmium(I) and dicadmium(I). Crystal structures of cadmium(II) exchanged zeolite A evacuated at 500 C and of its cadmium sorption complex
Journal of the American Chemical Society, 1979, 101, 5235-5239
4124793 CIFAl12 Cd8 H6 O51 Si12P m -3 m12.242; 12.242; 12.242
90; 90; 90
1834.67McCusker, L.B.; Seff, K.
Cadmium(I) and dicadmium(I). Crystal structures of cadmium(II) exchanged zeolite A evacuated at 500 C and of its cadmium sorption complex
Journal of the American Chemical Society, 1979, 101, 5235-5239
4124448 CIFAl12 Cd9.5 Cl4 H11 O55 Si12P m -3 m12.219; 12.219; 12.219
90; 90; 90
1824.34McCusker, L.B.; Seff, K.
Zero-coordinate cadmium(II). Over ion exchange. Crystal structures of hydrated and dehydrated zeolite A exchanged with Cd Cl2 to give Cd9.5 Cl4 (O H)3 -A
Journal of the American Chemical Society, 1978, 100, 5052-5057
4124447 CIFAl12 Cd9.5 Cl4 H3 O51 Si12P m -3 m12.269; 12.269; 12.269
90; 90; 90
1846.83McCusker, L.B.; Seff, K.
Zero-coordinate cadmium(II). Over ion exchange. Crystal structures of hydrated and dehydrated zeolite A exchanged with Cd Cl2 to give Cd9.5 Cl4 (O H)3 -A
Journal of the American Chemical Society, 1978, 100, 5052-5057
4124467 CIFAl12 Cl8 Co4 Na4 O48 Si12P m -3 m12.099; 12.099; 12.099
90; 90; 90
1771.12Subramanian, V.; Seff, K.; Ottersen, T.
A molecular chlorine complex of cobalt(II). The crystal structure of a dichlorine sorption complex of dehydrated cobalt(II)- exchanged sodium zeolite A, Co4 Na4 - A (Cl2)4
Journal of the American Chemical Society, 1978, 100, 2911-2913
4124432 CIFAl12 Cl8 Eu5.48 Na O48 Si12P m -3 m12.251; 12.251; 12.251
90; 90; 90
1838.72Firor, R.L.; Seff, K.
Five-coordinate europium(IV) and zero-coordinate europium(II). Crystal structure of dehydrated near-fully europium(II)-exchanged zeolite A, Eu5.5 Na-A partially oxidized by chlorine
Journal of the American Chemical Society, 1978, 100, 978-980
4124439 CIFAl12 Cs12.48 O48 Si12P m -3 m12.279; 12.279; 12.279
90; 90; 90
1851.35Heo, N.-H.; Seff, K.
Reaction of dehydrated Na12-A with cesium. Synthesis and crystal structure of fully dehydrated, fully Cs+ -exchanged Zeolite A
Journal of the American Chemical Society, 1987, 109, 7986-7992
4124427 CIFAl12 Cs7 K5 O48 Si12P m -3 m12.266; 12.266; 12.266
90; 90; 90
1845.48Firor, R.L.; Seff, K.
Zero-coordinate K+: Crystal structure of dehydrated cesium and potassium exchanged zeolite A. Cs7 K5 - A
Journal of the American Chemical Society, 1977, 99, 6249-6253
4124438 CIFAl12 Cs9.08 Na3.52 O48 Si12P m -3 m12.252; 12.252; 12.252
90; 90; 90
1839.17Heo, N.-H.; Seff, K.
Reaction of dehydrated Na12-A with cesium. Synthesis and crystal structure of fully dehydrated, fully Cs+ -exchanged Zeolite A
Journal of the American Chemical Society, 1987, 109, 7986-7992
4124431 CIFAl12 Eu4.504 Na0.9996 O50.752 Si12P m -3 m12.238; 12.238; 12.238
90; 90; 90
1832.87Firor, R.L.; Seff, K.
Europium(IV), a new oxidation state for europium. crystal structure of dehydrated europium(II)-exchanged sodium zeolite A, Eu4.5 Na3-A, partially oxidized by oxygen
Journal of the American Chemical Society, 1978, 100, 976-978
4124428 CIFAl12 Eu5.75 Na0.5 O48 Si12P m -3 m12.296; 12.296; 12.296
90; 90; 90
1859.05Firor, R.L.; Seff, K.
Near-zero-coordinate, three-coordinate, and four-coordinate europium(II). Bonding effects involving europium(II) valence orbitals. Crystal structure of dehydrated near-fully europium(II)- exchanged zeolite A
Journal of the American Chemical Society, 1977, 99, 7059-7061
4124426 CIFAl12 H14 Na O55 Rb11 Si12P m -3 m12.321; 12.321; 12.321
90; 90; 90
1870.42Firor, R.L.; Seff, K.
Zero-coordinate Rb+. The dehydrated and hydrated crystal structures of eleven-twelfths rubidium-exchanged zeolite A
Journal of the American Chemical Society, 1977, 99, 1112-1117
4124429 CIFAl12 H19 O58 Si12 Tl13P m -3 m12.38; 12.38; 12.38
90; 90; 90
1897.41Firor, R.L.; Seff, K.
Near-zero-coordinate thallium(I). The crystal structures of hydrated and dehydrated zeolite A fully exchanged with Tl O H
Journal of the American Chemical Society, 1977, 99, 4039-4044
4124675 CIFAl12 Li8 Na4 O48 Si12P m -3 m12.04; 12.04; 12.04
90; 90; 90
1745.34Reed, T.B.; Breck, D.W.
Crystalline zeolites. II. Crystal structure of synthetic zeolite, type A
Journal of the American Chemical Society, 1956, 78, 5972-5977
4124700 CIFAl12 N4.104 O96 Si36I -4 3 m14.41; 14.41; 14.41
90; 90; 90
2992.21Corbin, D.R.; Cox, D.E.; Abrams, L.; Jones, G.A.; Harrison, W.T.A.; Eddy, M.M.; Stucky, G.D.
Flexibility of the zeolite RHO framework. In situ X-ray and neutron powder structural characterization of divalent cation-exchanged zeolite RHO
Journal of the American Chemical Society, 1990, 112, 4821-4830
4124425 CIFAl12 Na O48 Rb11 Si12P m -3 m12.261; 12.261; 12.261
90; 90; 90
1843.22Firor, R.L.; Seff, K.
Zero-coordinate Rb+. The dehydrated and hydrated crystal structures of eleven-twelfths rubidium-exchanged zeolite A
Journal of the American Chemical Society, 1977, 99, 1112-1117
4124673 CIFAl12 Na12 O48 Si12P m -3 m12.32; 12.32; 12.32
90; 90; 90
1869.96Reed, T.B.; Breck, D.W.
Crystalline zeolites. II. Crystal structure of synthetic zeolite, type A
Journal of the American Chemical Society, 1956, 78, 5972-5977
4124674 CIFAl12 Na4 O48 Si12 Tl8P m -3 m12.33; 12.33; 12.33
90; 90; 90
1874.52Reed, T.B.; Breck, D.W.
Crystalline zeolites. II. Crystal structure of synthetic zeolite, type A
Journal of the American Chemical Society, 1956, 78, 5972-5977
4124430 CIFAl12 O48 Si12 Tl12P m -3 m12.18; 12.18; 12.18
90; 90; 90
1806.93Firor, R.L.; Seff, K.
Near-zero-coordinate thallium(I). The crystal structures of hydrated and dehydrated zeolite A fully exchanged with Tl O H
Journal of the American Chemical Society, 1977, 99, 4039-4044
4123932 CIFAl15 H132.4 Mo12 O118.7C 1 2/c 128.24919; 15.7094; 24.424
90; 102.337; 90
10588.5Son, J.-H.; Kwon, Y.-U.; Choi, H.
Porous crystal formation from polyoxometalate building blocks: single-crystal structure of (Al O4 Al12 (O H)12 (H2 O)24) (Al (O H)6 No6 O18)2 (O H) . 29.5(H2 O)
Journal of the American Chemical Society, 2000, 122, 7432-7433
4124503 CIFAl16 H32 Na16 O96 Si24F d d 218.226; 18.583; 6.579
90; 90; 90
2228.27Lee, Y.; Vogt, T.; Parise, J.B.; Hriljac, J.A.; Artioli, G.
Pressure-induced volume expansion of zeolites in the natrolite family
Journal of the American Chemical Society, 2002, 124, 5466-5475
4124504 CIFAl16 H64 Na16 O112 Si24F d d 218.39; 18.829; 6.547
90; 90; 90
2267Lee, Y.; Vogt, T.; Hriljac, J.A.; Parise, J.B.; Artioli, G.
Pressure-induced volume expansion of zeolites in the natrolite family
Journal of the American Chemical Society, 2002, 124, 5466-5475
4124505 CIFAl16 H64 Na16 O112 Si24F d d 217.924; 18.325; 6.487
90; 90; 90
2130.7Lee, Y.; Vogt, T.; Hriljac, J.A.; Parise, J.B.; Artioli, G.
Pressure-induced volume expansion of zeolites in the natrolite family
Journal of the American Chemical Society, 2002, 124, 5466-5475
4123227 CIFAl18 O111 P18P 6318.9377; 18.9377; 8.0529
90; 90; 120
2501.1Alabarse, Frederico G.; Rouquette, Jérôme; Coasne, Benoît; Haidoux, Abel; Paulmann, Carsten; Cambon, Olivier; Haines, Julien
Mechanism of H2O Insertion and Chemical Bond Formation in AlPO4-54·xH2O at High Pressure.
Journal of the American Chemical Society, 2015, 137, 584-587
4123228 CIFAl18 O111 P18P 6318.7342; 18.7342; 7.8979
90; 90; 120
2400.56Alabarse, Frederico G.; Rouquette, Jérôme; Coasne, Benoît; Haidoux, Abel; Paulmann, Carsten; Cambon, Olivier; Haines, Julien
Mechanism of H2O Insertion and Chemical Bond Formation in AlPO4-54·xH2O at High Pressure.
Journal of the American Chemical Society, 2015, 137, 584-587
4123229 CIFAl18 O111 P18P 6318.822; 18.822; 7.9759
90; 90; 120
2447Alabarse, Frederico G.; Rouquette, Jérôme; Coasne, Benoît; Haidoux, Abel; Paulmann, Carsten; Cambon, Olivier; Haines, Julien
Mechanism of H2O Insertion and Chemical Bond Formation in AlPO4-54·xH2O at High Pressure.
Journal of the American Chemical Society, 2015, 137, 584-587
4123230 CIFAl18 O111 P18P 6318.956; 18.956; 8.086
90; 90; 120
2516.3Alabarse, Frederico G.; Rouquette, Jérôme; Coasne, Benoît; Haidoux, Abel; Paulmann, Carsten; Cambon, Olivier; Haines, Julien
Mechanism of H2O Insertion and Chemical Bond Formation in AlPO4-54·xH2O at High Pressure.
Journal of the American Chemical Society, 2015, 137, 584-587
4123231 CIFAl18 O111 P18P 6318.8821; 18.8821; 8.0281
90; 90; 120
2478.8Alabarse, Frederico G.; Rouquette, Jérôme; Coasne, Benoît; Haidoux, Abel; Paulmann, Carsten; Cambon, Olivier; Haines, Julien
Mechanism of H2O Insertion and Chemical Bond Formation in AlPO4-54·xH2O at High Pressure.
Journal of the American Chemical Society, 2015, 137, 584-587
4101096 CIFAl19.2 Co12.8 O128 P32C 1 2/c 110.2959; 14.3715; 28.599
90; 91.094; 90
4231Morris, Russell
Journal of the American Chemical Society, 2006
4120552 CIFAl2 Ba N4 O4 Si3A 21 a m9.47791; 13.45426; 5.7694
90; 90; 90
735.704Park, Woon Bae; Singh, Satendra Pal; Sohn, Kee-Sun
Discovery of a phosphor for light emitting diode applications and its structural determination, ba(si,al)5(o,n)8:eu(2+).
Journal of the American Chemical Society, 2014, 136, 2363-2373
4124699 CIF
HKL
Al2 Ca2 O7 SiP -4 21 m7.67231; 7.67231; 5.05923
90; 90; 90
297.81Zhiguo Xia; C.-G. Ma; Maxim Molokeev; Quanlin Liu; Karl Rickert; Kenneth Poeppelmeier
Chemical Unit Cosubstitution and Tuning of Photoluminescence in the Ca2(Al1-xMgx)(Al1-xSi1+x)O7:Eu2+ Phosphor
Journal of the American Chemical Society, 2015, 137, 12494-12497
9014359 CIFAl2 Ca3 O6P m -3 m7.624; 7.624; 7.624
90; 90; 90
443.148Steele, F. A.; Davey, W. P.
The crystal structure of tricalcium aluminate
Journal of the American Chemical Society, 1929, 51, 2283-2293
4124696 CIF
HKL
Al2 Ca4 Mg O14 Si3P -4 21 m7.73707; 7.73707; 5.02948
90; 90; 90
301.08Zhiguo Xia; C.-G. Ma; Maxim Molokeev; Quanlin Liu; Karl Rickert; Kenneth Poeppelmeier
Chemical Unit Cosubstitution and Tuning of Photoluminescence in the Ca2(Al1-xMgx)(Al1-xSi1+x)O7:Eu2+ Phosphor
Journal of the American Chemical Society, 2015, 137, 12494-12497
4124783 CIFAl2 OF m -3 m4.98; 4.98; 4.98
90; 90; 90
123.506Hoch, M.; Johnston, H.L.
Formation, Stability and Crystal Structure of the Solid Aluminium Suboxides. Al2 O and Al O
Journal of the American Chemical Society, 1954, 76, 2560-2561
1010914 CIFAl2 O3R -3 c :R5.12; 5.12; 5.12
55.28; 55.28; 55.28
84.5Pauling, L; Hendricks, S B
Crystal Structures of Hematite and Corundum
Journal of the American Chemical Society, 1925, 47, 781-790
4124434 CIFAl2 O8 Si2 SrP m -3 m12.316; 12.316; 12.316
90; 90; 90
1868.14Firor, R.L.; Seff, K.
Near zero coordinate Ca2+ and Sr2+ in zeolite A. Crystal structures of dehydrated Ca6-A and Sr6-A
Journal of the American Chemical Society, 1978, 100, 3091-3096
4120619 CIFAl2.82 Au6.18 Sr2R -3 c :H8.4475; 8.4475; 21.735
90; 90; 120
1343.2Palasyuk, Andriy; Grin, Yuri; Miller, Gordon J.
Turning Gold into "Diamond": A Family of Hexagonal Diamond-Type Au-Frameworks Interconnected by Triangular Clusters in the Sr-Al-Au System.
Journal of the American Chemical Society, 2014, 136, 3108
4123413 CIFAl3 B3 F O10 Rb3P 3 1 c8.6819; 8.6819; 8.7423
90; 90; 120
570.67Zhao, Sangen; Gong, Pifu; Luo, Siyang; Liu, Sijie; Li, Lina; Asghar, Muhammad Adnan; Khan, Tariq; Hong, Maochun; Lin, Zheshuai; Luo, Junhua
Beryllium-Free Rb3Al3B3O10F with Reinforced Interlayer Bonding as a Deep-Ultraviolet Nonlinear Optical Crystal.
Journal of the American Chemical Society, 2015, 137, 2207-2210
4104728 CIFAl3 Br2 Cl12 S8 Sb7P 21 21 2111.989; 16.896; 17.378
90; 90; 90
3520.2Qichun Zhang; In Chung; Joon I. Jang; John B. Ketterson; Mercouri G. Kanatzidis
Chalcogenide Chemistry in Ionic Liquids: Nonlinear Optical Wave-Mixing Properties of the Double-Cubane Compound [Sb7S8Br2](AlCl4)3
Journal of the American Chemical Society, 2009, 131, 9896-9897
4124698 CIF
HKL
Al3 Ca4 Mg0.5 O14 Si2.5P -4 21 m7.69191; 7.69191; 5.04831
90; 90; 90
298.69Zhiguo Xia; C.-G. Ma; Maxim Molokeev; Quanlin Liu; Karl Rickert; Kenneth Poeppelmeier
Chemical Unit Cosubstitution and Tuning of Photoluminescence in the Ca2(Al1-xMgx)(Al1-xSi1+x)O7:Eu2+ Phosphor
Journal of the American Chemical Society, 2015, 137, 12494-12497
4123931 CIFAl3.53 Li2.05 Na1.61 O24 Si8.47R -3 m :R9.3385; 9.3385; 9.3385
93.482; 93.482; 93.482
809.686Smith, L.J.; Eckert, H.; Cheetham, A.K.
Site preferences in the mixed cation zeolite, Li, Na-chabazite: a combined solid-state NMR and neutron diffraction study
Journal of the American Chemical Society, 2000, 122, 1700-1708
4123930 CIFAl3.53 Li3.53 O24 Si8.47R -3 m :R9.3357; 9.3357; 9.3357
93.482; 93.482; 93.482
808.958Smith, L.J.; Eckert, H.; Cheetham, A.K.
Site preferences in the mixed cation zeolite, Li, Na-chabazite: a combined solid-state NMR and neutron diffraction study
Journal of the American Chemical Society, 2000, 122, 1700-1708
4123967 CIFAl52.996 Ru12 Si17.004 Sm8P m -3 m11.5101; 11.5101; 11.5101
90; 90; 90
1524.89Sieve, B.; Henning, R.; Chen, X.Z.; Kanatzidis, M.G.; Kannewurf, C.R.; Brazis, P.; Schultz, A.J.; Cowen, J.A.
Cubic aluminium silicides RE8 Ru12 Al49 Si9 (Alx Si12-x) (RE = Pr, Sm) from liquid aluminum. Empty (Si, Al)12 cuboctahedral clusters and assignment of the Al/Si distribution with neutron diffraction
Journal of the American Chemical Society, 2001, 123, 7040-7047
4123968 CIFAl53.44 Pr8 Ru12 Si16.56P m -3 m11.553; 11.553; 11.553
90; 90; 90
1542Sieve, B.; Chen, X.Z.; Henning, R.; Brazis, P.; Kannewurf, C.R.; Cowen, J.A.; Schultz, A.J.; Kanatzidis, M.G.
Cubic aluminium silicides RE8 Ru12 Al49 Si9 (Alx Si12-x) (RE= Pr, Sm) from liquid aluminum. Empty (Si, Al)12 cuboctahedral clusters and assignment of the Al/Si distribution with neutron diffraction
Journal of the American Chemical Society, 2001, 123, 7040-7047
4112389 CIFAl56 Ge3 Mn14P -311.098; 11.098; 10.3496
90; 90; 120
1103.9Li-Ming Wu; Dong-Kyun Seo
Mn14Al56+xGe3-x (x= 0-0.6): A New Intermetallic Phase Containing Unprecedented "Half-Broken" Mackay Icosahedra as Building Units
Journal of the American Chemical Society, 2004, 126, 4398-4403
4112390 CIFAl56.31 Ge2.69 Mn14P -311.1018; 11.1018; 10.3501
90; 90; 120
1104.7Li-Ming Wu; Dong-Kyun Seo
Mn14Al56+xGe3-x (x= 0-0.6): A New Intermetallic Phase Containing Unprecedented "Half-Broken" Mackay Icosahedra as Building Units
Journal of the American Chemical Society, 2004, 126, 4398-4403
4112391 CIFAl56.61 Ge2.39 Mn14P -311.103; 11.103; 10.3537
90; 90; 120
1105.4Li-Ming Wu; Dong-Kyun Seo
Mn14Al56+xGe3-x (x= 0-0.6): A New Intermetallic Phase Containing Unprecedented "Half-Broken" Mackay Icosahedra as Building Units
Journal of the American Chemical Society, 2004, 126, 4398-4403
4124691 CIFAl59 H48 Ni28.9 O408 Si133F d -3 m :224.45; 24.45; 24.45
90; 90; 90
14616.3Simpson, H.D.; Steinfink, H.
An X-Ray diffraction study of the zeolite complex m-dichlorbenzene nickel faujasite
Journal of the American Chemical Society, 1969, 91, 6225-6229
4120615 CIFAl7.62 Au13.38 Sr3P -6 2 m8.6644; 8.6644; 7.1068
90; 90; 120
462.04Palasyuk, Andriy; Grin, Yuri; Miller, Gordon J.
Turning Gold into "Diamond": A Family of Hexagonal Diamond-Type Au-Frameworks Interconnected by Triangular Clusters in the Sr-Al-Au System.
Journal of the American Chemical Society, 2014, 136, 3108
4127194 CIFAl78 Fe23.78 Pt0.22C 1 2/m 115.4634; 8.0701; 12.4586
90; 107.686; 90
1481.24Yamada, Tsunetomo; Kojima, Takayuki; Abe, Eiji; Kameoka, Satoshi; Murakami, Yumi; Gille, Peter; Tsai, An Pang
Probing Single Pt Atoms in Complex Intermetallic Al<sub>13</sub>Fe<sub>4</sub>.
Journal of the American Chemical Society, 2018
4120616 CIFAl8.81 Au12.19 Sr3P -6 2 m8.633; 8.633; 7.0832
90; 90; 120
457.18Palasyuk, Andriy; Grin, Yuri; Miller, Gordon J.
Turning Gold into "Diamond": A Family of Hexagonal Diamond-Type Au-Frameworks Interconnected by Triangular Clusters in the Sr-Al-Au System.
Journal of the American Chemical Society, 2014, 136, 3108
4123757 CIFAl9 B18 Cl2 O65.24P -3 c 114.58438; 14.58438; 12.22262
90; 90; 120
2251.49Chen, Hong; Ju, Jing; Meng, Qingpeng; Su, Jie; Lin, Cong; Zhou, Zhengyang; Li, Guobao; Wang, Weilu; Gao, Wenliang; Zeng, Chunmei; Tang, Chiu; Lin, Jianhua; Yang, Tao; Sun, Junliang
PKU-3: An HCl-Inclusive Aluminoborate for Strecker Reaction Solved by Combining RED and PXRD.
Journal of the American Chemical Society, 2015, 137, 7047-7050
4124454 CIFAl90.884 H2.25 O386 Si101.52 Sr45.44F m -3 c24.68; 24.68; 24.68
90; 90; 90
15032.6Pluth, J.J.; Smith, J.V.
Crystal structure of dehydrated Sr-exchanged Zeolite A. Absence of near-zero-coordinate Sr2+. Presence of Al complex
Journal of the American Chemical Society, 1982, 104, 6977-6982
4118156 CIFAm B9 O18P 1 21/n 17.703; 16.688; 9.872
90; 90.073; 90
1269Matthew J. Polinski; Daniel J. Grant; Shuao Wang; Evgeny V. Alekseev; Justin N. Cross; Eric M. Villa; Wulf Depmeier; Laura Gagliardi; Thomas E. Albrecht-Schmitt
Differentiating between Trivalent Lanthanides and Actinides
Journal of the American Chemical Society, 2012, 134, 10682-10692
4124687 CIFAm Cl OP 4/n m m :14; 4; 6.78
90; 90; 90
108.48Templeton, D.H.; Dauben, C.H.
Crystal Structures of Americium Compounds
Journal of the American Chemical Society, 1953, 75, 4560-4562
4127110 CIFAm Cr2 Cs O8P -15.8341; 7.2548; 9.786
73.026; 88.581; 81.081
391.27Galley, Shane S.; Arico, Alexandra A.; Lee, Tsung-Han; Deng, Xiaoyu; Yao, Yong-Xin; Sperling, Joseph M.; Proust, Vanessa; Storbeck, Julia S.; Dobrosavljevic, Vladimir; Neu, Jennifer N.; Siegrist, Theo; Baumbach, Ryan E.; Albrecht-Schmitt, Thomas E; Kaltsoyannis, Nikolas; Lanatà, Nicola
Uncovering the Origin of Divergence in the CsM(CrO4)2 (M = La, Pr, Nd, Sm, Eu; Am) Family through Examination of the Chemical Bonding in a Molecular Cluster and by Band Structure Analysis.
Journal of the American Chemical Society, 2018
4127111 CIFAm Cr2 Cs O8P 1 2/c 19.1759; 5.5211; 7.7323
90; 98.691; 90
387.23Galley, Shane S.; Arico, Alexandra A.; Lee, Tsung-Han; Deng, Xiaoyu; Yao, Yong-Xin; Sperling, Joseph M.; Proust, Vanessa; Storbeck, Julia S.; Dobrosavljevic, Vladimir; Neu, Jennifer N.; Siegrist, Theo; Baumbach, Ryan E.; Albrecht-Schmitt, Thomas E; Kaltsoyannis, Nikolas; Lanatà, Nicola
Uncovering the Origin of Divergence in the CsM(CrO4)2 (M = La, Pr, Nd, Sm, Eu; Am) Family through Examination of the Chemical Bonding in a Molecular Cluster and by Band Structure Analysis.
Journal of the American Chemical Society, 2018
4124620 CIFAm F2 K O2R -3 m :R6.78; 6.78; 6.78
36.25; 36.25; 36.25
97.511Asprey, L.B.; Zachariasen, W.H.; Ellinger, F.H.
Preparation, identification and crystal structure of a pentavalent americium compound, K Am O2 F2
Journal of the American Chemical Society, 1954, 76, 5235-5237
4124688 CIFAm2 O3I a -311.03; 11.03; 11.03
90; 90; 90
1341.92Templeton, D.H.; Dauben, C.H.
Crystal Structures of Americium Compounds
Journal of the American Chemical Society, 1953, 75, 4560-4562
4102049 CIFAs Br F12 Kr2 OP 1 21/c 15.7166; 13.6438; 15.1053
90; 111.446; 90
1096.6David S. Brock; Jonathan J. Casalis de Pury; Hélène P. A. Mercier; Gary J. Schrobilgen; Bernard Silvi
A Rare Example of a Krypton Difluoride Coordination Compound: [BrOF2][AsF6].2KrF2
Journal of the American Chemical Society, 2010, 132, 3533-3542
4116386 CIFAs Cl3 F6P 1 21/n 17.045; 11.001; 9.299
90; 94.42; 90
718.5Thomas Drews; Wolfram Koch; Konrad Seppelt
The Cl2O2+ Cation: Preparation and Structural Investigation of Cl2O2+SbF6- and Cl2O2+Sb2F11-
Journal of the American Chemical Society, 1999, 121, 4379-4384
4101695 CIFAs Cs3 S11 Ta2P 1 21/n 19.5967; 13.5926; 14.716
90; 98.876; 90
1896.6Bera, Tarun K.; Jang, Joon I.; Ketterson, John B.; Kanatzidis, Mercouri G.
Strong second harmonic generation from the tantalum thioarsenates A3Ta2AsS11 (A = K and Rb).
Journal of the American Chemical Society, 2009, 131, 75-77
4104434 CIFAs F10 H2 N SP -15.4447; 6.6457; 10.3063
89.484; 87.479; 74.955
359.79Gregory L. Smith; Hélène P. A. Mercier; Gary J. Schrobilgen
Solid-State and Solution Rearrangements of F3S\τbNXeF+ Leading to the F4S=NXe+ Cation; Syntheses, HF Solvolyses, and Structural Characterizations of [F4S=NXe][AsF6] and [F4S=NH2][AsF6]
Journal of the American Chemical Society, 2009, 131, 7272-7286
4105033 CIFAs F10 H3 O Xe2I 4/m c m8.715; 8.715; 12.989
90; 90; 90
986.5Michael Gerken; Matthew D. Moran; Hélène P. A. Mercier; Bernard E. Pointner; Gary J. Schrobilgen; Berthold Hoge; Karl O. Christe; Jerry A. Boatz
On the XeF+/H2O System: Synthesis and Characterization of the Xenon(II) Oxide Fluoride Cation, FXeOXeFXeF+
Journal of the American Chemical Society, 2009, 131, 13474-13489
4104433 CIFAs F10 N S XeC 1 2/c 125.9305; 5.0875; 14.8171
90; 119.549; 90
1700.45Gregory L. Smith; Hélène P. A. Mercier; Gary J. Schrobilgen
Solid-State and Solution Rearrangements of F3S\τbNXeF+ Leading to the F4S=NXe+ Cation; Syntheses, HF Solvolyses, and Structural Characterizations of [F4S=NXe][AsF6] and [F4S=NH2][AsF6]
Journal of the American Chemical Society, 2009, 131, 7272-7286
4105031 CIFAs F9 O Xe3P 1 c 16.7107; 9.115; 8.674
90; 96.851; 90
526.8Michael Gerken; Matthew D. Moran; Hélène P. A. Mercier; Bernard E. Pointner; Gary J. Schrobilgen; Berthold Hoge; Karl O. Christe; Jerry A. Boatz
On the XeF+/H2O System: Synthesis and Characterization of the Xenon(II) Oxide Fluoride Cation, FXeOXeFXeF+
Journal of the American Chemical Society, 2009, 131, 13474-13489
4107570 CIFAs Fe La OP 4/n m m :24.03533; 4.03533; 8.7409
90; 90; 90
142.336Yoichi Kamihara; Takumi Watanabe; Masahiro Hirano; Hideo Hosono
Iron-Based Layered Superconductor La[O1-xFx]FeAs (x = 0.05-0.12) with Tc = 26 K
Journal of the American Chemical Society, 2008, 130, 3296-3297
4123962 CIFAs H4 N O4 ZnP 1 21 18.959; 5.6327; 9.13
90; 90.159; 90
460.729Feng, P.-Y.; Zhang, T.-Z.; Bu Xianhui
Arsenate zeolite analogues with 11 topological types
Journal of the American Chemical Society, 2001, 123, 8608-8609
4101693 CIFAs K3 S11 Ta2C 1 c 114.2571; 12.4154; 9.4505
90; 100.12; 90
1646.78Bera, Tarun K.; Jang, Joon I.; Ketterson, John B.; Kanatzidis, Mercouri G.
Strong second harmonic generation from the tantalum thioarsenates A3Ta2AsS11 (A = K and Rb).
Journal of the American Chemical Society, 2009, 131, 75-77
4102046 CIFAs Li Se2C 1 c 112.2872; 5.5419; 5.5533
90; 113.117; 90
347.79Tarun K. Bera; Joon I. Jang; Jung-Hwan Song; Christos D. Malliakas; Arthur J. Freeman; John B. Ketterson; Mercouri G. Kanatzidis
Soluble Semiconductors AAsSe2 (A = Li, Na) with a Direct-Band-Gap and Strong Second Harmonic Generation: A Combined Experimental and Theoretical Study
Journal of the American Chemical Society, 2010, 132, 3484-3495
4102048 CIFAs Li Se2P 15.55073; 5.58029; 5.57706
92.72; 90.8322; 91.516
172.471Tarun K. Bera; Joon I. Jang; Jung-Hwan Song; Christos D. Malliakas; Arthur J. Freeman; John B. Ketterson; Mercouri G. Kanatzidis
Soluble Semiconductors AAsSe2 (A = Li, Na) with a Direct-Band-Gap and Strong Second Harmonic Generation: A Combined Experimental and Theoretical Study
Journal of the American Chemical Society, 2010, 132, 3484-3495
4102047 CIFAs Na Se2P 1 c 111.682; 5.9021; 11.8231
90; 90.446; 90
815.2Tarun K. Bera; Joon I. Jang; Jung-Hwan Song; Christos D. Malliakas; Arthur J. Freeman; John B. Ketterson; Mercouri G. Kanatzidis
Soluble Semiconductors AAsSe2 (A = Li, Na) with a Direct-Band-Gap and Strong Second Harmonic Generation: A Combined Experimental and Theoretical Study
Journal of the American Chemical Society, 2010, 132, 3484-3495
4101694 CIFAs Rb3 S11 Ta2C 1 c 114.4397; 12.8013; 9.5687
90; 99.289; 90
1745.55Bera, Tarun K.; Jang, Joon I.; Ketterson, John B.; Kanatzidis, Mercouri G.
Strong second harmonic generation from the tantalum thioarsenates A3Ta2AsS11 (A = K and Rb).
Journal of the American Chemical Society, 2009, 131, 75-77
4102045 CIFAs0.5 Li0.5 SeF m -3 m5.557; 5.557; 5.557
90; 90; 90
171.6Tarun K. Bera; Joon I. Jang; Jung-Hwan Song; Christos D. Malliakas; Arthur J. Freeman; John B. Ketterson; Mercouri G. Kanatzidis
Soluble Semiconductors AAsSe2 (A = Li, Na) with a Direct-Band-Gap and Strong Second Harmonic Generation: A Combined Experimental and Theoretical Study
Journal of the American Chemical Society, 2010, 132, 3484-3495
4112088 CIFAs2 B H K2 O8P 41 21 27.3568; 7.3568; 15.4671
90; 90; 90
837.12Seth B. Wiggin; Mark T. Weller
Boroarsenates: A Framework Motif and Family Templated on Cations and Anions
Journal of the American Chemical Society, 2005, 127, 17172-17173
4123005 CIFAs2 Ba Fe2I 4/m m m3.961; 3.961; 13.02
90; 90; 90
204.3Zaikina, Julia V.; Batuk, Maria; Abakumov, Artem M.; Navrotsky, Alexandra; Kauzlarich, Susan M.
Facile Synthesis of Ba1-xKxFe2As2 Superconductors via Hydride Route.
Journal of the American Chemical Society, 2014, 141121132150009
4123009 CIFAs2 Ba Fe2F m m m5.6139; 5.5746; 12.9594
90; 90; 90
405.568Zaikina, Julia V.; Batuk, Maria; Abakumov, Artem M.; Navrotsky, Alexandra; Kauzlarich, Susan M.
Facile Synthesis of Ba1-xKxFe2As2 Superconductors via Hydride Route.
Journal of the American Chemical Society, 2014, 141121132150009
4123004 CIFAs2 Ba0.32 Fe2 K0.68I 4/m m m3.88324; 3.88324; 13.53814
90; 90; 90
204.149Zaikina, Julia V.; Batuk, Maria; Abakumov, Artem M.; Navrotsky, Alexandra; Kauzlarich, Susan M.
Facile Synthesis of Ba1-xKxFe2As2 Superconductors via Hydride Route.
Journal of the American Chemical Society, 2014, 141121132150009
4123007 CIFAs2 Ba0.52 Fe2 K0.48I 4/m m m3.90675; 3.90675; 13.37425
90; 90; 90
204.127Zaikina, Julia V.; Batuk, Maria; Abakumov, Artem M.; Navrotsky, Alexandra; Kauzlarich, Susan M.
Facile Synthesis of Ba1-xKxFe2As2 Superconductors via Hydride Route.
Journal of the American Chemical Society, 2014, 141121132150009
4123003 CIFAs2 Ba0.83 Fe2 K0.17I 4/m m m3.94518; 3.94518; 13.13219
90; 90; 90
204.395Zaikina, Julia V.; Batuk, Maria; Abakumov, Artem M.; Navrotsky, Alexandra; Kauzlarich, Susan M.
Facile Synthesis of Ba1-xKxFe2As2 Superconductors via Hydride Route.
Journal of the American Chemical Society, 2014, 141121132150009
4123006 CIFAs2 Ba0.84 Fe2 K0.16I 4/m m m3.94518; 3.94518; 13.13219
90; 90; 90
204.395Zaikina, Julia V.; Batuk, Maria; Abakumov, Artem M.; Navrotsky, Alexandra; Kauzlarich, Susan M.
Facile Synthesis of Ba1-xKxFe2As2 Superconductors via Hydride Route.
Journal of the American Chemical Society, 2014, 141121132150009
4123010 CIFAs2 Ba0.84 Fe2 K0.16F m m m5.5864; 5.5564; 13.061
90; 90; 90
405.42Zaikina, Julia V.; Batuk, Maria; Abakumov, Artem M.; Navrotsky, Alexandra; Kauzlarich, Susan M.
Facile Synthesis of Ba1-xKxFe2As2 Superconductors via Hydride Route.
Journal of the American Chemical Society, 2014, 141121132150009
4124925 CIFAs2 Ca Co1.87I 4/m m m3.9927; 3.9927; 10.3133
90; 90; 90
164.411Tan, Xiaoyan; Fabbris, Gilberto; Haskel, Daniel; Yaroslavtsev, Alexander A.; Cao, Huibo; Thompson, Corey M.; Kovnir, Kirill; Menushenkov, Alexey P.; Chernikov, Roman V.; Garlea, V. Ovidiu; Shatruk, Michael
A Transition from Localized to Strongly Correlated Electron Behavior and Mixed Valence Driven by Physical or Chemical Pressure in ACo2As2 (A = Eu and Ca).
Journal of the American Chemical Society, 2016, 138, 2724-2731
4120528 CIFAs2 Ca0.73 Fe Pr0.27P 1 21/m 13.9163; 3.8953; 10.311
90; 90.788; 90
157.28Yakita, Hiroyuki; Ogino, Hiraku; Okada, Tomoyuki; Yamamoto, Akiyasu; Kishio, Kohji; Tohei, Tetsuya; Ikuhara, Yuichi; Gotoh, Yoshito; Fujihisa, Hiroshi; Kataoka, Kunimitsu; Eisaki, Hiroshi; Shimoyama, Jun-Ichi
A New Layered Iron Arsenide Superconductor: (Ca,Pr)FeAs2.
Journal of the American Chemical Society, 2014, 136, 846-849
4124926 CIFAs2 Ca0.845 Co1.888 La0.155I 4/m m m4.0018; 4.0018; 10.3726
90; 90; 90
166.111Tan, Xiaoyan; Fabbris, Gilberto; Haskel, Daniel; Yaroslavtsev, Alexander A.; Cao, Huibo; Thompson, Corey M.; Kovnir, Kirill; Menushenkov, Alexey P.; Chernikov, Roman V.; Garlea, V. Ovidiu; Shatruk, Michael
A Transition from Localized to Strongly Correlated Electron Behavior and Mixed Valence Driven by Physical or Chemical Pressure in ACo2As2 (A = Eu and Ca).
Journal of the American Chemical Society, 2016, 138, 2724-2731
4124924 CIFAs2 Ca0.9 Co1.906 Eu0.1I 4/m m m3.9984; 3.9984; 10.3696
90; 90; 90
165.781Tan, Xiaoyan; Fabbris, Gilberto; Haskel, Daniel; Yaroslavtsev, Alexander A.; Cao, Huibo; Thompson, Corey M.; Kovnir, Kirill; Menushenkov, Alexey P.; Chernikov, Roman V.; Garlea, V. Ovidiu; Shatruk, Michael
A Transition from Localized to Strongly Correlated Electron Behavior and Mixed Valence Driven by Physical or Chemical Pressure in ACo2As2 (A = Eu and Ca).
Journal of the American Chemical Society, 2016, 138, 2724-2731
4124927 CIFAs2 Co2 EuI 4/m m m3.929; 3.929; 11.512
90; 90; 90
177.71Tan, Xiaoyan; Fabbris, Gilberto; Haskel, Daniel; Yaroslavtsev, Alexander A.; Cao, Huibo; Thompson, Corey M.; Kovnir, Kirill; Menushenkov, Alexey P.; Chernikov, Roman V.; Garlea, V. Ovidiu; Shatruk, Michael
A Transition from Localized to Strongly Correlated Electron Behavior and Mixed Valence Driven by Physical or Chemical Pressure in ACo2As2 (A = Eu and Ca).
Journal of the American Chemical Society, 2016, 138, 2724-2731
4117335 CIFAs2 Cs9 H74 Li3 Mo6 O109 S6 W18P -6 2 m22.818; 22.818; 21.265
90; 90; 120
9589Jérôme Marrot; Marie Anne Pilette; Mohamed Haouas; Sébastien Floquet; Francis Taulelle; Xavier López; Josep M. Poblet; Emmanuel Cadot
Polyoxometalates Paneling through {Mo~2~O~2~S~2~} Coordination: Cation-Directed Conformations and Chemistry of a Supramolecular Hexameric Scaffold
Journal of the American Chemical Society, 2012, 134, 1724-1737
4123008 CIFAs2 Fe2 KI 4/m m m3.849; 3.849; 13.867
90; 90; 90
205.44Zaikina, Julia V.; Batuk, Maria; Abakumov, Artem M.; Navrotsky, Alexandra; Kauzlarich, Susan M.
Facile Synthesis of Ba1-xKxFe2As2 Superconductors via Hydride Route.
Journal of the American Chemical Society, 2014, 141121132150009
4119241 CIFAs2 H26 Mn3 N10 S8C 1 2/c 124.312; 7.9301; 12.412
90; 93.21; 90
2389.2Wei-Wei Xiong; Eashwer Umesh Athresh; Yu Ting Ng; Junfeng Ding; Tom Wu; Qichun Zhang
Growing Crystalline Chalcogenidoarsenates in Surfactants: From Zero-Dimensional Cluster to Three-Dimensional Framework
Journal of the American Chemical Society, 2013, 135, 1256-1259
4112087 CIFAs20 B16 Cl10 Cs6 H16 O80I 4/m8.966; 8.966; 25.244
90; 90; 90
2029.3Seth B. Wiggin; Mark T. Weller
Boroarsenates: A Framework Motif and Family Templated on Cations and Anions
Journal of the American Chemical Society, 2005, 127, 17172-17173
4104228 CIFAs3 Ca Fe4P n m a11.8953; 3.743; 11.61
90; 90; 90
516.92Iliya Todorov; Duck Young Chung; Christos D. Malliakas; Quing'an Li; Thomas Bakas; Alexios Douvalis; Giancarlo Trimarchi; Kenneth Gray; John F. Mitchell; Arthur J. Freeman; Mercouri G. Kanatzidis
CaFe4As3: A Metallic Iron Arsenide with Anisotropic Magnetic and Charge-Transport Properties
Journal of the American Chemical Society, 2009, 131, 5405-5407
4104229 CIFAs3 Ca Fe4P n m a11.8649; 3.7309; 11.5611
90; 90; 90
511.77Iliya Todorov; Duck Young Chung; Christos D. Malliakas; Quing'an Li; Thomas Bakas; Alexios Douvalis; Giancarlo Trimarchi; Kenneth Gray; John F. Mitchell; Arthur J. Freeman; Mercouri G. Kanatzidis
CaFe4As3: A Metallic Iron Arsenide with Anisotropic Magnetic and Charge-Transport Properties
Journal of the American Chemical Society, 2009, 131, 5405-5407
4104230 CIFAs3 Ca Fe4P n m a11.8656; 3.7322; 11.5622
90; 90; 90
512.03Iliya Todorov; Duck Young Chung; Christos D. Malliakas; Quing'an Li; Thomas Bakas; Alexios Douvalis; Giancarlo Trimarchi; Kenneth Gray; John F. Mitchell; Arthur J. Freeman; Mercouri G. Kanatzidis
CaFe4As3: A Metallic Iron Arsenide with Anisotropic Magnetic and Charge-Transport Properties
Journal of the American Chemical Society, 2009, 131, 5405-5407
4104231 CIFAs3 Ca Fe4P n m a11.852; 3.7352; 11.549
90; 90; 90
511.27Iliya Todorov; Duck Young Chung; Christos D. Malliakas; Quing'an Li; Thomas Bakas; Alexios Douvalis; Giancarlo Trimarchi; Kenneth Gray; John F. Mitchell; Arthur J. Freeman; Mercouri G. Kanatzidis
CaFe4As3: A Metallic Iron Arsenide with Anisotropic Magnetic and Charge-Transport Properties
Journal of the American Chemical Society, 2009, 131, 5405-5407
4119243 CIFAs3 H4 Mn N S6R 3 :H9.1872; 9.1872; 10.8539
90; 90; 120
793.38Wei-Wei Xiong; Eashwer Umesh Athresh; Yu Ting Ng; Junfeng Ding; Tom Wu; Qichun Zhang
Growing Crystalline Chalcogenidoarsenates in Surfactants: From Zero-Dimensional Cluster to Three-Dimensional Framework
Journal of the American Chemical Society, 2013, 135, 1256-1259
4123963 CIFAs3 H6 N O13 Zn4I 21 313.8527; 13.8527; 13.8527
90; 90; 90
2658.3Feng, P.-Y.; Zhang, T.-Z.; Bu Xianhui
Arsenate zeolite analogues with 11 topological types
Journal of the American Chemical Society, 2001, 123, 8608-8609
4127420 CIFAs32 Eu15 Ga22C 1 2/c 122.8204; 22.8257; 19.7972
90; 98.237; 90
10205.8Weippert, Valentin; Haffner, Arthur; Stamatopoulos, Alexis; Johrendt, Dirk
Supertetrahedral Layers Based on GaAs or InAs.
Journal of the American Chemical Society, 2019, 141, 11245-11252
4127421 CIFAs32 Eu15 In22C 1 2/c 123.703; 23.702; 22.337
90; 113.473; 90
11510.7Weippert, Valentin; Haffner, Arthur; Stamatopoulos, Alexis; Johrendt, Dirk
Supertetrahedral Layers Based on GaAs or InAs.
Journal of the American Chemical Society, 2019, 141, 11245-11252
4127419 CIFAs32 Ga22 Sr15C 1 2/c 122.966; 22.9639; 19.8929
90; 98.229; 90
10383.3Weippert, Valentin; Haffner, Arthur; Stamatopoulos, Alexis; Johrendt, Dirk
Supertetrahedral Layers Based on GaAs or InAs.
Journal of the American Chemical Society, 2019, 141, 11245-11252
4127424 CIFAs32 In22 Sr15C 1 2/c 123.838; 23.818; 20.763
90; 98.244; 90
11667Weippert, Valentin; Haffner, Arthur; Stamatopoulos, Alexis; Johrendt, Dirk
Supertetrahedral Layers Based on GaAs or InAs.
Journal of the American Chemical Society, 2019, 141, 11245-11252
4118469 CIFAs4 Ba2 Fe2 O Ti2I 4/m m m4.0276; 4.02761; 27.3441
90; 90; 90
443.565Yun-Lei Sun; Hao Jiang; Hui-Fei Zhai; Jin-Ke Bao; Wen-He Jiao; Qian Tao; Chen-Yi Shen; Yue-Wu Zeng; Zhu-An Xu; Guang-Han Cao
Ba2Ti2Fe2As4O: A New Superconductor Containing Fe2As2 Layers and Ti2O Sheets
Journal of the American Chemical Society, 2012, 134, 12893-12896
4105722 CIFAs4 Bi3 Cl13 Hg8P 31 2 111.3324; 11.3324; 42.768
90; 90; 120
4756.6Xiao-Ming Jiang; Ming-Jian Zhang; Hui-Yi Zeng; Guo-Cong Guo; Jin-Shun Huang
Inorganic Supramolecular Compounds with 3-D Chiral Frameworks Show Potential as Both Mid-IR Second-Order Nonlinear Optical and Piezoelectric Materials
Journal of the American Chemical Society, 2011, 133, 3410-3418
4121563 CIFAs4 Co16 H120 Na28 O218 P4 W36F d -3 :235.514; 35.514; 35.514
90; 90; 90
44792Han, Xin-Bao; Zhang, Zhi-Ming; Zhang, Teng; Li, Yang-Guang; Lin, Wenbin; You, Wansheng; Su, Zhong-Min; Wang, En-Bo
Polyoxometalate-based cobalt-phosphate molecular catalysts for visible light-driven water oxidation.
Journal of the American Chemical Society, 2014, 136, 5359-5366
4117334 CIFAs4 Cs15 H128 Li9 Mo12 O208 S12 W36C 1 2/c 147.2304; 18.6529; 36.3782
90; 126.753; 90
25678.1Jérôme Marrot; Marie Anne Pilette; Mohamed Haouas; Sébastien Floquet; Francis Taulelle; Xavier López; Josep M. Poblet; Emmanuel Cadot
Polyoxometalates Paneling through {Mo~2~O~2~S~2~} Coordination: Cation-Directed Conformations and Chemistry of a Supramolecular Hexameric Scaffold
Journal of the American Chemical Society, 2012, 134, 1724-1737
4117333 CIFAs4 H214 Li10 Mo12 O246 Rb14 S12 W36C 1 2/c 147.4379; 18.6347; 36.2086
90; 127.567; 90
25370.9Jérôme Marrot; Marie Anne Pilette; Mohamed Haouas; Sébastien Floquet; Francis Taulelle; Xavier López; Josep M. Poblet; Emmanuel Cadot
Polyoxometalates Paneling through {Mo~2~O~2~S~2~} Coordination: Cation-Directed Conformations and Chemistry of a Supramolecular Hexameric Scaffold
Journal of the American Chemical Society, 2012, 134, 1724-1737
4119240 CIFAs4 H32 Mn2 N8 S16P 1 2/n 19.2086; 8.8211; 20.7793
90; 96.047; 90
1678.51Wei-Wei Xiong; Eashwer Umesh Athresh; Yu Ting Ng; Junfeng Ding; Tom Wu; Qichun Zhang
Growing Crystalline Chalcogenidoarsenates in Surfactants: From Zero-Dimensional Cluster to Three-Dimensional Framework
Journal of the American Chemical Society, 2013, 135, 1256-1259
1010609 CIFAs4 O6F d -3 m :111.06; 11.06; 11.06
90; 90; 90
1352.9Bozorth, R M
The crystal structures of the cubic forms of arsenious and antimonous oxide
Journal of the American Chemical Society, 1923, 45, 1621-1627
4102868 CIFAs4 S4P 1 21/n 19.3204; 13.5483; 6.5794
90; 106.479; 90
796.69Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102869 CIFAs4 S4P 1 21/n 19.3198; 13.548; 6.579
90; 106.475; 90
796.59Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102870 CIFAs4 S4P 1 21/n 19.3198; 13.5479; 6.5789
90; 106.472; 90
796.58Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102871 CIFAs4 S4P 1 21/n 19.3199; 13.548; 6.5788
90; 106.468; 90
796.6Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102872 CIFAs4 S4P 1 21/n 19.3203; 13.5485; 6.5792
90; 106.466; 90
796.72Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102873 CIFAs4 S4P 1 21/n 19.3201; 13.548; 6.5789
90; 106.464; 90
796.65Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102874 CIFAs4 S4P 1 21/n 19.3204; 13.548; 6.5788
90; 106.46; 90
796.68Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102875 CIFAs4 S4P 1 21/n 19.3208; 13.5481; 6.5791
90; 106.456; 90
796.77Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102876 CIFAs4 S4P 1 21/n 19.3211; 13.5484; 6.579
90; 106.45; 90
796.83Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102877 CIFAs4 S4P 1 21/n 19.3214; 13.5483; 6.5792
90; 106.446; 90
796.89Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102878 CIFAs4 S4P 1 21/n 19.3218; 13.549; 6.5793
90; 106.44; 90
797Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102879 CIFAs4 S4P 1 21/n 19.3218; 13.5491; 6.5792
90; 106.437; 90
797.01Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102880 CIFAs4 S4P 1 21/n 19.3222; 13.549; 6.5794
90; 106.433; 90
797.07Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102881 CIFAs4 S4P 1 21/n 19.3226; 13.5496; 6.5794
90; 106.427; 90
797.17Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102882 CIFAs4 S4P 1 21/n 19.3231; 13.5498; 6.5795
90; 106.42; 90
797.26Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102883 CIFAs4 S4P 1 21/n 19.3232; 13.5499; 6.5795
90; 106.417; 90
797.29Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102884 CIFAs4 S4P 1 21/n 19.3231; 13.5497; 6.5793
90; 106.414; 90
797.26Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102885 CIFAs4 S4P 1 21/n 19.3237; 13.55; 6.5797
90; 106.408; 90
797.4Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102886 CIFAs4 S4P 1 21/n 19.324; 13.5505; 6.5797
90; 106.404; 90
797.47Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102887 CIFAs4 S4P 1 21/n 19.3222; 13.5569; 6.5852
90; 106.507; 90
797.938Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102888 CIFAs4 S4P 1 21/n 19.3252; 13.5608; 6.5854
90; 106.442; 90
798.72Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102889 CIFAs4 S4P 1 21/n 19.3297; 13.5636; 6.5887
90; 106.349; 90
800.05Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102890 CIFAs4 S4P 1 21/n 19.3348; 13.5692; 6.5881
90; 106.298; 90
800.95Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102891 CIFAs4 S4P 1 21/n 19.3356; 13.5689; 6.5929
90; 106.24; 90
801.82Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102892 CIFAs4 S4P 1 21/n 19.3409; 13.5708; 6.5947
90; 106.193; 90
802.8Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102893 CIFAs4 S4P 1 21/n 19.3362; 13.5746; 6.6014
90; 106.262; 90
803.16Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102894 CIFAs4 S4P 1 21/n 19.3425; 13.5732; 6.6003
90; 106.186; 90
803.79Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102895 CIFAs4 S4P 1 21/n 19.346; 13.5777; 6.5936
90; 106.204; 90
803.47Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102896 CIFAs4 S4P 1 21/n 19.3485; 13.583; 6.5934
90; 106.167; 90
804.13Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102897 CIFAs4 S4P 1 21/n 19.3479; 13.5823; 6.5943
90; 106.151; 90
804.21Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102898 CIFAs4 S4P 1 21/n 19.3502; 13.5844; 6.5948
90; 106.122; 90
804.71Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102899 CIFAs4 S4P 1 21/n 19.3316; 13.5678; 6.5866
90; 106.178; 90
800.9Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102900 CIFAs4 S4P 1 21/n 19.3235; 13.5573; 6.5865
90; 106.533; 90
798.12Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102901 CIFAs4 S4P 1 21/n 19.3242; 13.5575; 6.5875
90; 106.517; 90
798.38Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102902 CIFAs4 S4P 1 21/n 19.3244; 13.5579; 6.5877
90; 106.512; 90
798.47Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102903 CIFAs4 S4P 1 21/n 19.3245; 13.5582; 6.5876
90; 106.504; 90
798.51Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102904 CIFAs4 S4P 1 21/n 19.3249; 13.5583; 6.5875
90; 106.5; 90
798.56Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102905 CIFAs4 S4P 1 21/n 19.3257; 13.5589; 6.5879
90; 106.496; 90
798.73Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102906 CIFAs4 S4P 1 21/n 19.3253; 13.5586; 6.5877
90; 106.492; 90
798.67Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102907 CIFAs4 S4P 1 21/n 19.3257; 13.5587; 6.5876
90; 106.487; 90
798.72Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102908 CIFAs4 S4P 1 21/n 19.3265; 13.5596; 6.5879
90; 106.484; 90
798.89Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102909 CIFAs4 S4P 1 21/n 19.3267; 13.5596; 6.588
90; 106.48; 90
798.93Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102910 CIFAs4 S4P 1 21/n 19.3261; 13.5597; 6.5877
90; 106.475; 90
798.87Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102911 CIFAs4 S4P 1 21/n 19.3268; 13.56; 6.5878
90; 106.472; 90
798.97Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102912 CIFAs4 S4P 1 21/n 19.3264; 13.559; 6.5876
90; 106.471; 90
798.86Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102913 CIFAs4 S4P 1 21/n 19.3266; 13.5579; 6.5869
90; 106.462; 90
798.77Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102914 CIFAs4 S4P 1 21/n 19.3286; 13.5614; 6.5881
90; 106.447; 90
799.35Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102915 CIFAs4 S4P 1 21/n 19.3294; 13.5627; 6.5886
90; 106.44; 90
799.58Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102916 CIFAs4 S4P 1 21/n 19.3299; 13.5634; 6.5888
90; 106.436; 90
799.71Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102917 CIFAs4 S4P 1 21/n 19.3301; 13.5634; 6.5888
90; 106.43; 90
799.75Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102918 CIFAs4 S4P 1 21/n 19.3308; 13.5643; 6.589
90; 106.428; 90
799.9Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102919 CIFAs4 S4P 1 21/n 19.3303; 13.5634; 6.5888
90; 106.422; 90
799.8Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102920 CIFAs4 S4P 1 21/n 19.3298; 13.5627; 6.5882
90; 106.421; 90
799.65Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102921 CIFAs4 S4P 1 21/n 19.3303; 13.5624; 6.5879
90; 106.411; 90
799.68Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4102922 CIFAs4 S4P 1 21/n 19.3313; 13.5636; 6.5884
90; 106.402; 90
799.93Panče Naumov; Petre Makreski; Gjorgji Petruševski; Tomče Runčevski; Gligor Jovanovski
Visualization of a Discrete Solid-State Process with Steady-State X-ray Diffraction: Observation of Hopping of Sulfur Atoms in Single Crystals of Realgar
Journal of the American Chemical Society, 2010, 132, 11398-11401
4117332 CIFAs6 H192 K34.5 Mo18 Na1.5 O312 S18 W54P 1 21/n 121.112; 44.991; 38.4158
90; 96.196; 90
36276Jérôme Marrot; Marie Anne Pilette; Mohamed Haouas; Sébastien Floquet; Francis Taulelle; Xavier López; Josep M. Poblet; Emmanuel Cadot
Polyoxometalates Paneling through {Mo~2~O~2~S~2~} Coordination: Cation-Directed Conformations and Chemistry of a Supramolecular Hexameric Scaffold
Journal of the American Chemical Society, 2012, 134, 1724-1737
4117330 CIFAs6 H240 K3.5 Mo18 Na32.5 O336 S18 W54P -122.217; 25.49; 37.77
75.41; 85.28; 83.71
20542Jérôme Marrot; Marie Anne Pilette; Mohamed Haouas; Sébastien Floquet; Francis Taulelle; Xavier López; Josep M. Poblet; Emmanuel Cadot
Polyoxometalates Paneling through {Mo~2~O~2~S~2~} Coordination: Cation-Directed Conformations and Chemistry of a Supramolecular Hexameric Scaffold
Journal of the American Chemical Society, 2012, 134, 1724-1737
4117331 CIFAs6 H392 K Li35 Mo18 O412 S18 W54P n m a39.7619; 37.8141; 25.0128
90; 90; 90
37608.3Jérôme Marrot; Marie Anne Pilette; Mohamed Haouas; Sébastien Floquet; Francis Taulelle; Xavier López; Josep M. Poblet; Emmanuel Cadot
Polyoxometalates Paneling through {Mo~2~O~2~S~2~} Coordination: Cation-Directed Conformations and Chemistry of a Supramolecular Hexameric Scaffold
Journal of the American Chemical Society, 2012, 134, 1724-1737
4127423 CIFAs8 Eu3 Ga6C 1 2/c 122.74; 22.747; 25.505
90; 96.393; 90
13111Weippert, Valentin; Haffner, Arthur; Stamatopoulos, Alexis; Johrendt, Dirk
Supertetrahedral Layers Based on GaAs or InAs.
Journal of the American Chemical Society, 2019, 141, 11245-11252
4127422 CIFAs8 Ga6 Sr3C 1 2/c 122.8363; 22.8335; 26.8169
90; 108.613; 90
13251.8Weippert, Valentin; Haffner, Arthur; Stamatopoulos, Alexis; Johrendt, Dirk
Supertetrahedral Layers Based on GaAs or InAs.
Journal of the American Chemical Society, 2019, 141, 11245-11252
4123416 CIFAu Bi Pb2 S3 Te2P m m n :212.3722; 4.0997; 9.3435
90; 90; 90
473.92Fang, Lei; Im, Jino; Stoumpos, Constantinos C.; Shi, Fengyuan; Dravid, Vinayak; Leroux, Maxime; Freeman, Arthur J.; Kwok, Wai-Kwong; Chung, Duck Young; Kanatzidis, Mercouri
Two-Dimensional Mineral [Pb2BiS3][AuTe2]: High-Mobility Charge Carriers in Single-Atom-Thick Layers.
Journal of the American Chemical Society, 2015, 137, 2311-2317
4123311 CIFAu Ce SbP 63/m m c4.61403; 4.61403; 16.6348
90; 90; 120
306.697Seibel, Elizabeth M.; Schoop, Leslie M.; Xie, Weiwei; Gibson, Quinn D.; Webb, James B.; Fuccillo, Michael K.; Krizan, Jason W.; Cava, Robert J.
Gold-Gold Bonding: The Key to Stabilizing the 19-Electron Ternary Phases LnAuSb (Ln = La-Nd and Sm).
Journal of the American Chemical Society, 2015, 137, 1282-1289
6000559 CIFAu F3P 61 2 25.1508; 5.1508; 16.2637
90; 90; 120
373.68Zemva, B.; Lutar, K.; Jesih, A.; Casteel, W. J.; Wilkinson, A. P.; Cox, D. E.; Vondreele, R. B.; Borrmann, H.; Bartlett, N.
Silver trifluoride - preparation, crystal-structure, some properties, and comparison with AuF3
Journal of The American Chemical Society, 1991, 113, 4192-4198
4109877 CIFAu H54 K15 O95 P2 W18F d d d :228.594; 31.866; 38.241
90; 90; 90
34844Rui Cao; Travis M. Anderson; Paula M. B. Piccoli; Arthur J. Schultz; Thomas F. Koetzle; Yurii V. Geletii; Elena Slonkina; Britt Hedman; Keith O. Hodgson; Kenneth I. Hardcastle; Xikui Fang; Martin L. Kirk; Sushilla Knottenbelt; Paul Kögerler; Djamaladdin G. Musaev; Keiji Morokuma; Masashi Takahashi; Craig L. Hill
Terminal Gold-Oxo Complexes
Journal of the American Chemical Society, 2007, 129, 11118-11133
4109880 CIFAu H57 K9 O93.5 P2 W18F d d d :228.605; 31.857; 38.273
90; 90; 90
34877Rui Cao; Travis M. Anderson; Paula M. B. Piccoli; Arthur J. Schultz; Thomas F. Koetzle; Yurii V. Geletii; Elena Slonkina; Britt Hedman; Keith O. Hodgson; Kenneth I. Hardcastle; Xikui Fang; Martin L. Kirk; Sushilla Knottenbelt; Paul Kögerler; Djamaladdin G. Musaev; Keiji Morokuma; Masashi Takahashi; Craig L. Hill
Terminal Gold-Oxo Complexes
Journal of the American Chemical Society, 2007, 129, 11118-11133
4123309 CIFAu La SbP 63/m m c4.63839; 4.63839; 16.83143
90; 90; 120
313.607Seibel, Elizabeth M.; Schoop, Leslie M.; Xie, Weiwei; Gibson, Quinn D.; Webb, James B.; Fuccillo, Michael K.; Krizan, Jason W.; Cava, Robert J.
Gold-Gold Bonding: The Key to Stabilizing the 19-Electron Ternary Phases LnAuSb (Ln = La-Nd and Sm).
Journal of the American Chemical Society, 2015, 137, 1282-1289
4123310 CIFAu Nd SbP 63/m m c4.58003; 4.58003; 16.47753
90; 90; 120
299.336Seibel, Elizabeth M.; Schoop, Leslie M.; Xie, Weiwei; Gibson, Quinn D.; Webb, James B.; Fuccillo, Michael K.; Krizan, Jason W.; Cava, Robert J.
Gold-Gold Bonding: The Key to Stabilizing the 19-Electron Ternary Phases LnAuSb (Ln = La-Nd and Sm).
Journal of the American Chemical Society, 2015, 137, 1282-1289
4109881 CIF
HKL
Au0.88 H20 K12.5 O80 P2 W18F d d d :228.721; 31.61; 39.159
90; 90; 90
35551Rui Cao; Travis M. Anderson; Paula M. B. Piccoli; Arthur J. Schultz; Thomas F. Koetzle; Yurii V. Geletii; Elena Slonkina; Britt Hedman; Keith O. Hodgson; Kenneth I. Hardcastle; Xikui Fang; Martin L. Kirk; Sushilla Knottenbelt; Paul Kögerler; Djamaladdin G. Musaev; Keiji Morokuma; Masashi Takahashi; Craig L. Hill
Terminal Gold-Oxo Complexes
Journal of the American Chemical Society, 2007, 129, 11118-11133
4109878 CIFAu1.05 H62 K7.5 O101 P2 W19.95P 63/m m c16.173; 16.173; 19.7659
90; 90; 120
4477.4Rui Cao; Travis M. Anderson; Paula M. B. Piccoli; Arthur J. Schultz; Thomas F. Koetzle; Yurii V. Geletii; Elena Slonkina; Britt Hedman; Keith O. Hodgson; Kenneth I. Hardcastle; Xikui Fang; Martin L. Kirk; Sushilla Knottenbelt; Paul Kögerler; Djamaladdin G. Musaev; Keiji Morokuma; Masashi Takahashi; Craig L. Hill
Terminal Gold-Oxo Complexes
Journal of the American Chemical Society, 2007, 129, 11118-11133
4109448 CIFAu12.2 Ca3 In6.3I m -315.152; 15.152; 15.152
90; 90; 90
3478.6Qisheng Lin; John D. Corbett
Development of the Ca-Au-In Icosahedral Quasicrystal and Two Crystalline Approximants: Practice via Pseudogap Electronic Tuning
Journal of the American Chemical Society, 2007, 129, 6789-6797
4120322 CIF
HKL
Au16 Ba8 P30P b c n14.6362; 10.4655; 28.9836
90; 90; 90
4439.57James Fulmer; Oleg I. Lebedev; Vladimir Roddatis; Derrick C. Kaseman; Sabyasachi Sen; Juli-Anna Dolyniuk; Kathleen Lee; Andrei V. Olenev; Kirill Kovnir
Clathrate Ba8Au16P30: The "Gold Standard" for Lattice Thermal Conductivity
Journal of the American Chemical Society, 2013, 135, 12313-12323
4102302 CIFAu16 Bi4.78 Ca3.22F -4 3 m7.9046; 7.9046; 7.9046
90; 90; 90
493.9Qisheng Lin; John D. Corbett
Multiple Nonstoichiometric Phases with Discrete Composition Ranges in the CaAu5-CaAu4Bi-BiAu2 System. A Case Study of the Chemistry of Spinodal Decomposition
Journal of the American Chemical Society, 2010, 132, 5662-5671
4102299 CIFAu19.4 Bi0.6 Ca4F -4 3 m7.7646; 7.7646; 7.7646
90; 90; 90
468.12Qisheng Lin; John D. Corbett
Multiple Nonstoichiometric Phases with Discrete Composition Ranges in the CaAu5-CaAu4Bi-BiAu2 System. A Case Study of the Chemistry of Spinodal Decomposition
Journal of the American Chemical Society, 2010, 132, 5662-5671
1010201 CIFAu2 Cl6 Cs2I 4/m m m7.49; 7.49; 10.87
90; 90; 90
609.8Elliott, N; Pauling, L
The Crystal Structure of Cesium Aurous Auric Chloride, Vs~2~ Au Au Cl~6~, and Cesium Argentous Auric Chloride, Cs~2~ Ag Au Cl~6~
Journal of the American Chemical Society, 1938, 60, 1846-1851
4117645 CIFAu3 Ge SrP 4/n m m :26.2741; 6.2741; 5.4944
90; 90; 90
216.28Qisheng Lin; John D Corbett
Formation of Nets of Corner-Shared Bicapped Gold Squares in SrAu3Ge: How a BaAl4- Type Derivative Reconciles Fewer Valence Electrons and the Origin of Its Uniaxial Negative Thermal Expansion
Journal of the American Chemical Society, 2012, 134, 4877-4884
4117646 CIFAu3 Ge SrP 4/n m m :26.2638; 6.2638; 5.5082
90; 90; 90
216.12Qisheng Lin; John D Corbett
Formation of Nets of Corner-Shared Bicapped Gold Squares in SrAu3Ge: How a BaAl4- Type Derivative Reconciles Fewer Valence Electrons and the Origin of Its Uniaxial Negative Thermal Expansion
Journal of the American Chemical Society, 2012, 134, 4877-4884
4117647 CIFAu3 Ge SrP 4/n m m :26.249; 6.249; 5.5104
90; 90; 90
215.18Qisheng Lin; John D Corbett
Formation of Nets of Corner-Shared Bicapped Gold Squares in SrAu3Ge: How a BaAl4- Type Derivative Reconciles Fewer Valence Electrons and the Origin of Its Uniaxial Negative Thermal Expansion
Journal of the American Chemical Society, 2012, 134, 4877-4884
4109449 CIFAu37 Ca12.6 In39.6P a -324.632; 24.632; 24.632
90; 90; 90
14945Qisheng Lin; John D. Corbett
Development of the Ca-Au-In Icosahedral Quasicrystal and Two Crystalline Approximants: Practice via Pseudogap Electronic Tuning
Journal of the American Chemical Society, 2007, 129, 6789-6797
4110908 CIFAu4 In2 KI 4/m c m8.6675; 8.6675; 8.3684
90; 90; 90
628.68Bin Li; John D. Corbett
Intermetallic Compounds with 1D Infinite Tunnels. Syntheses and Structures of AAu4In2 (A = K, Rb)
Journal of the American Chemical Society, 2006, 128, 12392-12393
4110910 CIFAu4 In2 K0.65 Rb0.35I 4/m c m8.7852; 8.7852; 8.3259
90; 90; 90
642.59Bin Li; John D. Corbett
Intermetallic Compounds with 1D Infinite Tunnels. Syntheses and Structures of AAu4In2 (A = K, Rb)
Journal of the American Chemical Society, 2006, 128, 12392-12393
4110911 CIFAu4 In2 K0.87 Rb0.13I 4/m c m8.7032; 8.7032; 8.337
90; 90; 90
631.49Bin Li; John D. Corbett
Intermetallic Compounds with 1D Infinite Tunnels. Syntheses and Structures of AAu4In2 (A = K, Rb)
Journal of the American Chemical Society, 2006, 128, 12392-12393
4110909 CIFAu4 In2 RbI 4/m c m8.8349; 8.8349; 8.2736
90; 90; 90
645.8Bin Li; John D. Corbett
Intermetallic Compounds with 1D Infinite Tunnels. Syntheses and Structures of AAu4In2 (A = K, Rb)
Journal of the American Chemical Society, 2006, 128, 12392-12393
4119195 CIFAu5 Mn Y3R -3 :H8.4899; 8.4899; 18.144
90; 90; 120
1132.58Saroj L. Samal; Abhishek Pandey; David C. Johnston; John D. Corbett
Y3MnAu5: Three Distinctived-Metal Functions in an Intergrown Cluster Phase
Journal of the American Chemical Society, 2013, 135, 910-917
4120171 CIFAu6.4 Ba2 Zn2.6R -3 c :H8.6386; 8.6386; 21.963
90; 90; 120
1419.41Qisheng Lin; Trinath Mishra; John D. Corbett
Hexagonal-Diamond-like Gold Lattices, Ba and (Au,T)3 Interstitials, and Delocalized Bonding in a Family of Intermetallic Phases Ba2Au6(Au,T)3 (T = Zn, Cd, Ga, In, or Sn)
Journal of the American Chemical Society, 2013, 135, 11023-11031
4120177 CIFAu6.81 Ba2 Ga2.19R -3 c :H8.7186; 8.7186; 21.816
90; 90; 120
1436.1Qisheng Lin; Trinath Mishra; John D. Corbett
Hexagonal-Diamond-like Gold Lattices, Ba and (Au,T)3 Interstitials, and Delocalized Bonding in a Family of Intermetallic Phases Ba2Au6(Au,T)3 (T = Zn, Cd, Ga, In, or Sn)
Journal of the American Chemical Society, 2013, 135, 11023-11031
4120176 CIFAu6.94 Ba2 Cd2.06R -3 c :H8.8352; 8.8352; 22.51
90; 90; 120
1521.73Qisheng Lin; Trinath Mishra; John D. Corbett
Hexagonal-Diamond-like Gold Lattices, Ba and (Au,T)3 Interstitials, and Delocalized Bonding in a Family of Intermetallic Phases Ba2Au6(Au,T)3 (T = Zn, Cd, Ga, In, or Sn)
Journal of the American Chemical Society, 2013, 135, 11023-11031
4120178 CIFAu6.97 Ba2 In2.03R -3 c :H8.8478; 8.8478; 22.487
90; 90; 120
1524.5Qisheng Lin; Trinath Mishra; John D. Corbett
Hexagonal-Diamond-like Gold Lattices, Ba and (Au,T)3 Interstitials, and Delocalized Bonding in a Family of Intermetallic Phases Ba2Au6(Au,T)3 (T = Zn, Cd, Ga, In, or Sn)
Journal of the American Chemical Society, 2013, 135, 11023-11031
4120174 CIFAu7.11 Ba2 Zn1.89R -3 c :H8.6747; 8.6747; 22.004
90; 90; 120
1434Qisheng Lin; Trinath Mishra; John D. Corbett
Hexagonal-Diamond-like Gold Lattices, Ba and (Au,T)3 Interstitials, and Delocalized Bonding in a Family of Intermetallic Phases Ba2Au6(Au,T)3 (T = Zn, Cd, Ga, In, or Sn)
Journal of the American Chemical Society, 2013, 135, 11023-11031
4120175 CIFAu7.89 Ba2 Zn1.11R -3 c :H8.6762; 8.6762; 22.238
90; 90; 120
1449.72Qisheng Lin; Trinath Mishra; John D. Corbett
Hexagonal-Diamond-like Gold Lattices, Ba and (Au,T)3 Interstitials, and Delocalized Bonding in a Family of Intermetallic Phases Ba2Au6(Au,T)3 (T = Zn, Cd, Ga, In, or Sn)
Journal of the American Chemical Society, 2013, 135, 11023-11031
4120172 CIFAu7.97 Ba2 Zn1.03R -3 c :H8.6645; 8.6645; 22.325
90; 90; 120
1451.5Qisheng Lin; Trinath Mishra; John D. Corbett
Hexagonal-Diamond-like Gold Lattices, Ba and (Au,T)3 Interstitials, and Delocalized Bonding in a Family of Intermetallic Phases Ba2Au6(Au,T)3 (T = Zn, Cd, Ga, In, or Sn)
Journal of the American Chemical Society, 2013, 135, 11023-11031
4102303 CIFAu8 Bi2.64 Ca1.36F -4 3 m7.9505; 7.9505; 7.9505
90; 90; 90
502.55Qisheng Lin; John D. Corbett
Multiple Nonstoichiometric Phases with Discrete Composition Ranges in the CaAu5-CaAu4Bi-BiAu2 System. A Case Study of the Chemistry of Spinodal Decomposition
Journal of the American Chemical Society, 2010, 132, 5662-5671
4120173 CIFAu8.06 Ba2 Sn0.94R -3 c :H8.8112; 8.8112; 22.308
90; 90; 120
1499.9Qisheng Lin; Trinath Mishra; John D. Corbett
Hexagonal-Diamond-like Gold Lattices, Ba and (Au,T)3 Interstitials, and Delocalized Bonding in a Family of Intermetallic Phases Ba2Au6(Au,T)3 (T = Zn, Cd, Ga, In, or Sn)
Journal of the American Chemical Society, 2013, 135, 11023-11031
4102301 CIFAu8.18 Bi1.82 Ca2F -4 3 m7.9199; 7.9199; 7.9199
90; 90; 90
496.77Qisheng Lin; John D. Corbett
Multiple Nonstoichiometric Phases with Discrete Composition Ranges in the CaAu5-CaAu4Bi-BiAu2 System. A Case Study of the Chemistry of Spinodal Decomposition
Journal of the American Chemical Society, 2010, 132, 5662-5671
4102300 CIFAu9.34 Bi0.66 Ca2F -4 3 m7.8246; 7.8246; 7.8246
90; 90; 90
479.06Qisheng Lin; John D. Corbett
Multiple Nonstoichiometric Phases with Discrete Composition Ranges in the CaAu5-CaAu4Bi-BiAu2 System. A Case Study of the Chemistry of Spinodal Decomposition
Journal of the American Chemical Society, 2010, 132, 5662-5671
9012288 CIFBP -4 n 28.73; 8.73; 5.03
90; 90; 90
383.351Hoard, J. L.; Geller, S.; Hughes, R. E.
On the structure of elementary boron
Journal of the American Chemical Society, 1951, 73, 1892-1893
9012309 CIFBP 42/n n m :18.74; 8.74; 5.068
90; 90; 90
387.132Hoard, J. L.; Hughes, R. E.; Sands, D. E.
The structure of tetragonal boron Sample: needle III
Journal of the American Chemical Society, 1958, 80, 4507-4515
9012310 CIFBP 42/n n m :18.771; 8.771; 5.088
90; 90; 90
391.422Hoard, J. L.; Hughes, R. E.; Sands, D. E.
The structure of tetragonal boron Sample: plate
Journal of the American Chemical Society, 1958, 80, 4507-4515
4125285 CIFB Bi3 O9 TeP 638.751; 8.751; 5.8981
90; 90; 120
391.16Xia, Mingjun; Jiang, Xingxing; Lin, Zheshuai; Li, Rukang
"All-Three-in-One": A New Bismuth-Tellurium-Borate Bi3TeBO9 Exhibiting Strong Second Harmonic Generation Response.
Journal of the American Chemical Society, 2016, 138, 14190-14193
4119072 CIFB Cl15 Cs K Zr6P m m a18.672; 14.026; 9.731
90; 90; 90
2548.49Corbett, J.D.; Ziebarth, R.P.
Cation distributions within a cluster framework. Synthesis and structure of the carbon- and boron-centered zirconium cluster compounds Cs K Zr6 Cl15 C and Cs K Zr6 Cl15 B
Journal of the American Chemical Society, 1987, 109, 4844-4850
4119073 CIFB Cl15 K2 Zr6C c c m11.386; 15.98; 14.008
90; 90; 90
2548.73Corbett, J.D.; Ziebarth, R.P.
Cluster Framework Structures and Relationships. Two Compounds with a New Connectivity, K2 Zr6 Cl15 B and K3 Zr6 Cl15 Be
Journal of the American Chemical Society, 1988, 110, 1132-1139
4119074 CIFB Cs I14 Zr6C m c a15.939; 14.263; 12.974
90; 90; 90
2949.48Corbett, J.D.; Smith, J.D.
Four zirconium iodide cluster phases centered by boron, aluminum, or silicon
Journal of the American Chemical Society, 1986, 108, 1927-1934
4114280 CIFB F4 Fe N3 O3P 1 21/n 19.167; 7.5255; 10.327
90; 97.571; 90
706.21Trevor W. Hayton; W. Stephen McNeil; Brian O. Patrick; Peter Legzdins
Toward Binary Nitrosyls: Distinctly Bent Fe-N-O Linkages in Base-Stabilized Fe(NO)3+ Complexes
Journal of the American Chemical Society, 2003, 125, 12935-12944
4124798 CIFB F4 H N4 S4P 1 21/n 16.563; 11.717; 11.409
90; 101.63; 90
859.325Cordes, A.W.; Noble, M.C.; Marcellus, C.G.; Pennington, W.T.; Oakley, R.T.
Preparation and Crystal and Molecular Structure of S4 N4 H(+) B F4(-). Molecular Orbital Study of the Protonation of Tetrasulfur Tetranitride
Journal of the American Chemical Society, 1983, 105, 6008-6012
1011135 CIFB F4 H4 NP n m a9.06; 5.64; 7.23
90; 90; 90
369.4Hoard, J L; Blair, V
The crystal structures of rubidium and ammonium fluoborates
Journal of the American Chemical Society, 1935, 57, 1985-1988
1010094 CIFB F4 RbP n m a9.07; 5.6; 7.23
90; 90; 90
367.2Hoard, J L; Blair, V
The Crystal Structures of Rubidium and Ammonium Fluoborates
Journal of the American Chemical Society, 1935, 57, 1985-1988
4124794 CIFB H4 NaF -4 3 m6.139; 6.139; 6.139
90; 90; 90
231.362Soldate, A.M.
Crystal structure of sodium borohydride
Journal of the American Chemical Society, 1947, 69, 987-988
4102947 CIFB H5 K NP b c a9.349; 8.209; 17.192
90; 90; 90
1319.4Himashinie V. K. Diyabalanage; Tessui Nakagawa; Roshan P. Shrestha; Troy A. Semelsberger; Benjamin L. Davis; Brian L. Scott; Anthony K. Burrell; William I. F. David; Kate R. Ryan; Martin Owen Jones; Peter P. Edwards
Potassium(I) Amidotrihydroborate: Structure and Hydrogen Release
Journal of the American Chemical Society, 2010, 132, 11836-11837
4106960 CIFB H5 N NaP b c a5.6446; 7.425; 14.514
90; 90; 90
608.3David J. Wolstenholme; James T. Titah; Franklin N. Che; Kyle T. Traboulsee; Jenna Flogeras; G. Sean McGrady
Homopolar Dihydrogen Bonding in Alkali-Metal Amidoboranes and Its Implications for Hydrogen Storage
Journal of the American Chemical Society, 2011, 133, 16598-16604
4116439 CIFB H6 NP m n 215.395; 4.887; 4.986
90; 90; 90
131.46Wim T. Klooster; Thomas F. Koetzle; Per E. M. Siegbahn; Thomas B. Richardson; Robert H. Crabtree
Study of the N-H...H-B Dihydrogen Bond Including the Crystal Structure of BH3NH3 by Neutron Diffraction
Journal of the American Chemical Society, 1999, 121, 6337-6343
4124654 CIFB H6 NI 4 m m5.255; 5.255; 5.048
90; 90; 90
139.401Hughes, E.W.
The Crystal Structure of Ammonia-Borane, H3 N B H3
Journal of the American Chemical Society, 1956, 78, 502-503
4119075 CIFB I12 Zr6R -3 :H14.534; 14.534; 9.986
90; 90; 120
1826.81Smith, J.D.; Corbett, J.D.
Four zirconium iodide cluster phases centered by boron, aluminum, or silicon
Journal of the American Chemical Society, 1986, 108, 1927-1934
4127821 CIFB Na2 P2P n m a9.5672; 3.2014; 6.104
90; 90; 90
186.96Woo, Katherine E.; Wang, Jian; Mark, Justin; Kovnir, Kirill
Directing Boron-Phosphorus Bonds in Crystalline Solid: Oxidative Polymerization of P═B═P Monomers into 1D Chains.
Journal of the American Chemical Society, 2019, 141, 13017-13021
4119492 CIFB11 Ba4 F O20C m c 2118.8112; 10.7151; 8.6031
90; 90; 90
1734.1Hongping Wu; Hongwei Yu; Zhihua Yang; Xueling Hou; Xin Su; Shilie Pan; Kenneth R. Poeppelmeier; James M. Rondinelli
Designing a Deep-Ultraviolet Nonlinear Optical Material with a Large Second Harmonic Generation Response
Journal of the American Chemical Society, 2013, 135, 4215-4218
4121299 CIFB12 Be12 Li Na5 O33P 1 c 18.8552; 22.8039; 12.669
90; 110.323; 90
2399Hongwei Huang; Lijuan Liu; Shifeng Jin; Wenjiao Yao; Yihe Zhang; Chuangtian Chen
Deep-Ultraviolet Nonlinear Optical Materials: Na2Be4B4O11 and LiNa5Be12B12O33
Journal of the American Chemical Society, 2013, 135, 18319-18322
4114851 CIFB12 Co2 H4 Li2 O23I 1 2/a 117.4296; 4.5518; 19.5893
90; 103.91; 90
1508.56Jesse L. C. Rowsell; Nicholas J. Taylor; Linda F. Nazar
Structure and Ion Exchange Properties of a New Cobalt Borate with a Tunnel Structure "Templated" by Na+
Journal of the American Chemical Society, 2002, 124, 6522-6523
4114850 CIFB12 Co2 Na2 O21I 1 2/a 117.1447; 4.553; 19.4408
90; 103.212; 90
1477.4Jesse L. C. Rowsell; Nicholas J. Taylor; Linda F. Nazar
Structure and Ion Exchange Properties of a New Cobalt Borate with a Tunnel Structure "Templated" by Na+
Journal of the American Chemical Society, 2002, 124, 6522-6523
4103153 CIFB12 F12 H4 K2 O2P 1 21/c 17.2955; 11.2522; 9.2269
90; 103.73; 90
735.8Dmitry V. Peryshkov; Alexey A. Popov; Steven H. Strauss
Latent Porosity in Potassium Dodecafluoro-closo-dodecaborate(2-). Structures and Rapid Room Temperature Interconversions of Crystalline K2B12F12, K2(H2O)2B12F12, and K2(H2O)4B12F12 in the Presence of Water Vapor
Journal of the American Chemical Society, 2010, 132, 13902-13913
4103154 CIFB12 F12 H8 K2 O4P -18.3988; 8.5982; 12.7454
98.83; 102.056; 104.958
848.39Dmitry V. Peryshkov; Alexey A. Popov; Steven H. Strauss
Latent Porosity in Potassium Dodecafluoro-closo-dodecaborate(2-). Structures and Rapid Room Temperature Interconversions of Crystalline K2B12F12, K2(H2O)2B12F12, and K2(H2O)4B12F12 in the Presence of Water Vapor
Journal of the American Chemical Society, 2010, 132, 13902-13913
4119076 CIFB12 Ga2 O24 P2 Zn6I -4 3 m7.6139; 7.6139; 7.6139
90; 90; 90
441.389Eckert, H.; Moran, K.L.; Wasylishen, R.E.; Harrison, W.T.A.; Eichele, K.; Gier, T.E.; Stucky, G.D.
Synthesis and characterization of mixed ZnSe/GaP semiconductor species included in the sodalite structure
Journal of the American Chemical Society, 1993, 115, 10553-10558
4124319 CIFB12 H16P n a 2110.686; 8.686; 11.351
90; 90; 90
1053.58Brewer, C.T.; Grimes, R.N.
Metal-induced oxidative fusion of boranes. Synthesis of B12 H16, the first neutral dodecaborane
Journal of the American Chemical Society, 1984, 106, 2722-2723
4119077 CIFB12 O24 Se2 Zn8I -4 3 m7.6801; 7.6801; 7.6801
90; 90; 90
453.003Eckert, H.; Moran, K.L.; Harrison, W.T.A.; Wasylishen, R.E.; Stucky, G.D.; Eichele, K.; Gier, T.E.
Synthesis and characterization of mixed ZnSe/GaP semiconductor species included in the sodalite structure
Journal of the American Chemical Society, 1993, 115, 10553-10558
4118155 CIFB13 Cl2 O27 Pu2P 1 21/n 18.0522; 14.568; 9.82
90; 90.12; 90
1151.9Matthew J. Polinski; Daniel J. Grant; Shuao Wang; Evgeny V. Alekseev; Justin N. Cross; Eric M. Villa; Wulf Depmeier; Laura Gagliardi; Thomas E. Albrecht-Schmitt
Differentiating between Trivalent Lanthanides and Actinides
Journal of the American Chemical Society, 2012, 134, 10682-10692
4118157 CIFB14 Cl Cm2 O29P 1 21/n 17.9561; 14.212; 9.836
90; 90.013; 90
1112.2Matthew J. Polinski; Daniel J. Grant; Shuao Wang; Evgeny V. Alekseev; Justin N. Cross; Eric M. Villa; Wulf Depmeier; Laura Gagliardi; Thomas E. Albrecht-Schmitt
Differentiating between Trivalent Lanthanides and Actinides
Journal of the American Chemical Society, 2012, 134, 10682-10692
4126816 CIFB15 Ba K7 Lu2 O30R 3 2 :H12.9705; 12.9705; 15.651
90; 90; 120
2280.3Mutailipu, Miriding; Xie, Zhiqing; Su, Xin; Zhang, Min; Wang, Ying; Yang, Zhihua; Janjua, Muhammad Ramzan Saeed Ashraf; Pan, Shilie
Chemical Cosubstitution-Oriented Design of Rare-Earth Borates as Potential Ultraviolet Nonlinear Optical Materials.
Journal of the American Chemical Society, 2017
4126821 CIFB15 Ba K7 O30 Y2R 3 2 :H12.9884; 12.9884; 15.718
90; 90; 120
2296.4Mutailipu, Miriding; Xie, Zhiqing; Su, Xin; Zhang, Min; Wang, Ying; Yang, Zhihua; Janjua, Muhammad Ramzan Saeed Ashraf; Pan, Shilie
Chemical Cosubstitution-Oriented Design of Rare-Earth Borates as Potential Ultraviolet Nonlinear Optical Materials.
Journal of the American Chemical Society, 2017
4126813 CIFB15 Bi2 K7 O30 PbR 3 2 :H13.331; 13.331; 14.91
90; 90; 120
2294.7Mutailipu, Miriding; Xie, Zhiqing; Su, Xin; Zhang, Min; Wang, Ying; Yang, Zhihua; Janjua, Muhammad Ramzan Saeed Ashraf; Pan, Shilie
Chemical Cosubstitution-Oriented Design of Rare-Earth Borates as Potential Ultraviolet Nonlinear Optical Materials.
Journal of the American Chemical Society, 2017
4126817 CIFB15 Bi2 K7 O30 SrR 3 2 :H13.2512; 13.2512; 15.288
90; 90; 120
2324.8Mutailipu, Miriding; Xie, Zhiqing; Su, Xin; Zhang, Min; Wang, Ying; Yang, Zhihua; Janjua, Muhammad Ramzan Saeed Ashraf; Pan, Shilie
Chemical Cosubstitution-Oriented Design of Rare-Earth Borates as Potential Ultraviolet Nonlinear Optical Materials.
Journal of the American Chemical Society, 2017
4126820 CIFB15 Ca Gd2 K7 O30R 3 2 :H13.31; 13.31; 15.005
90; 90; 120
2302.1Mutailipu, Miriding; Xie, Zhiqing; Su, Xin; Zhang, Min; Wang, Ying; Yang, Zhihua; Janjua, Muhammad Ramzan Saeed Ashraf; Pan, Shilie
Chemical Cosubstitution-Oriented Design of Rare-Earth Borates as Potential Ultraviolet Nonlinear Optical Materials.
Journal of the American Chemical Society, 2017
4126818 CIFB15 Ca K7 Lu2 O30R 3 2 :H13.1433; 13.1433; 14.905
90; 90; 120
2229.8Mutailipu, Miriding; Xie, Zhiqing; Su, Xin; Zhang, Min; Wang, Ying; Yang, Zhihua; Janjua, Muhammad Ramzan Saeed Ashraf; Pan, Shilie
Chemical Cosubstitution-Oriented Design of Rare-Earth Borates as Potential Ultraviolet Nonlinear Optical Materials.
Journal of the American Chemical Society, 2017
4126815 CIFB15 Ca K7 O30 Y2R 3 2 :H13.2182; 13.2182; 14.949
90; 90; 120
2262Mutailipu, Miriding; Xie, Zhiqing; Su, Xin; Zhang, Min; Wang, Ying; Yang, Zhihua; Janjua, Muhammad Ramzan Saeed Ashraf; Pan, Shilie
Chemical Cosubstitution-Oriented Design of Rare-Earth Borates as Potential Ultraviolet Nonlinear Optical Materials.
Journal of the American Chemical Society, 2017
4126822 CIFB15 Gd2 K7 O30 SrR 3 2 :H13.148; 13.148; 15.417
90; 90; 120
2308.1Mutailipu, Miriding; Xie, Zhiqing; Su, Xin; Zhang, Min; Wang, Ying; Yang, Zhihua; Janjua, Muhammad Ramzan Saeed Ashraf; Pan, Shilie
Chemical Cosubstitution-Oriented Design of Rare-Earth Borates as Potential Ultraviolet Nonlinear Optical Materials.
Journal of the American Chemical Society, 2017
4126819 CIFB15 Gd2.5 K7.5 O30R 3 2 :H13.265; 13.265; 15.282
90; 90; 120
2329Mutailipu, Miriding; Xie, Zhiqing; Su, Xin; Zhang, Min; Wang, Ying; Yang, Zhihua; Janjua, Muhammad Ramzan Saeed Ashraf; Pan, Shilie
Chemical Cosubstitution-Oriented Design of Rare-Earth Borates as Potential Ultraviolet Nonlinear Optical Materials.
Journal of the American Chemical Society, 2017
4126811 CIFB15 K7 Lu2 O30 SrR 3 2 :H13.0208; 13.0208; 15.297
90; 90; 120
2246Mutailipu, Miriding; Xie, Zhiqing; Su, Xin; Zhang, Min; Wang, Ying; Yang, Zhihua; Janjua, Muhammad Ramzan Saeed Ashraf; Pan, Shilie
Chemical Cosubstitution-Oriented Design of Rare-Earth Borates as Potential Ultraviolet Nonlinear Optical Materials.
Journal of the American Chemical Society, 2017
4126812 CIFB15 K7 O30 Sr Y2R 3 2 :H13.1142; 13.1142; 15.319
90; 90; 120
2281.6Mutailipu, Miriding; Xie, Zhiqing; Su, Xin; Zhang, Min; Wang, Ying; Yang, Zhihua; Janjua, Muhammad Ramzan Saeed Ashraf; Pan, Shilie
Chemical Cosubstitution-Oriented Design of Rare-Earth Borates as Potential Ultraviolet Nonlinear Optical Materials.
Journal of the American Chemical Society, 2017
4126814 CIFB15 K7.5 O30 Y2.5R 3 2 :H13.142; 13.142; 15.099
90; 90; 120
2258.4Mutailipu, Miriding; Xie, Zhiqing; Su, Xin; Zhang, Min; Wang, Ying; Yang, Zhihua; Janjua, Muhammad Ramzan Saeed Ashraf; Pan, Shilie
Chemical Cosubstitution-Oriented Design of Rare-Earth Borates as Potential Ultraviolet Nonlinear Optical Materials.
Journal of the American Chemical Society, 2017
4118152 CIFB18 Cl3 Eu4 O38P 1 2/c 110.4397; 6.4189; 23.0367
90; 97.196; 90
1531.56Matthew J. Polinski; Daniel J. Grant; Shuao Wang; Evgeny V. Alekseev; Justin N. Cross; Eric M. Villa; Wulf Depmeier; Laura Gagliardi; Thomas E. Albrecht-Schmitt
Differentiating between Trivalent Lanthanides and Actinides
Journal of the American Chemical Society, 2012, 134, 10682-10692
4118151 CIFB18 Cl3 O38 Sm4P 1 2/c 110.448; 6.4192; 23.051
90; 97.22; 90
1533.7Matthew J. Polinski; Daniel J. Grant; Shuao Wang; Evgeny V. Alekseev; Justin N. Cross; Eric M. Villa; Wulf Depmeier; Laura Gagliardi; Thomas E. Albrecht-Schmitt
Differentiating between Trivalent Lanthanides and Actinides
Journal of the American Chemical Society, 2012, 134, 10682-10692
4131154 CIFB2 H42 O6C 1 2/c 123.2609; 10.0529; 13.4445
90; 99.182; 90
3103.6Abdulkarim, Ali; Hinkel, Felix; Jänsch, Daniel; Freudenberg, Jan; Golling, Florian E.; Müllen, Klaus
A New Solution to an Old Problem: Synthesis of Unsubstituted Poly(para-phenylene).
Journal of the American Chemical Society, 2016, 138, 16208-16211
4128441 CIFB2 Li2 Na2 O5C m c m3.313; 9.985; 13.4
90; 90; 90
443.3Zhang, Min; An, Donghai; Hu, Cong; Chen, Xinglong; Yang, Zhihua; Pan, Shilie
Rational Design via Synergistic Combination Leads to an Outstanding Deep-Ultraviolet Birefringent Li<sub>2</sub>Na<sub>2</sub>B<sub>2</sub>O<sub>5</sub> Material with an Unvalued B<sub>2</sub>O<sub>5</sub> Functional Gene.
Journal of the American Chemical Society, 2019, 141, 3258-3264
4101313 CIFB2 O7 Se2P 21 21 217.4815; 7.8984; 9.0478
90; 90; 90
534.65Kong, Fang; Huang, Shu-Ping; Sun, Zhong-Ming; Mao, Jiang-Gao; Cheng, Wen-Dan
Se2(B2O7): a new type of second-order NLO material.
Journal of the American Chemical Society, 2006, 128, 7750-7751
4127432 CIFB20 Eu9 Mg O41 S2P 63/m8.2708; 8.2708; 24.919
90; 90; 120
1476.2Chi, Yang; Xu, Jing; Xue, Huai-Guo; Zhang, Yueping; Chen, Xiaolong; Whangbo, Myung-Hwan; Guo, Sheng-Ping; Deng, Shuiquan
Triple-Kagomé-Layer Slabs of Mixed-Valence Rare-Earth Ions Exhibiting Quantum Spin Liquid Behaviors: Synthesis and Characterization of Eu<sub>9</sub>MgS<sub>2</sub>B<sub>20</sub>O<sub>41</sub>.
Journal of the American Chemical Society, 2019, 141, 9533-9536
4124171 CIFB3 Ba3 Cl O9 Pb2C 2 2 2110.4706; 14.4379; 7.9454
90; 90; 90
1201.1Dong, Xiaoyu; Jing, Qun; Shi, Yunjing; Yang, Zhihua; Pan, Shilie; Poeppelmeier, Kenneth R.; Young, Joshua; Rondinelli, James M.
Pb2Ba3(BO3)3Cl: A Material with Large SHG Enhancement Activated by Pb-Chelated BO3 Groups.
Journal of the American Chemical Society, 2015, 137, 9417-9422
4102581 CIFB3 Be Na O6P n a 219.153; 11.934; 4.372
90; 90; 90
477.6Shichao Wang; Ning Ye; Wei Li; Dan Zhao
Alkaline Beryllium Borate NaBeB3O6 and ABe2B3O7 (A = K, Rb) as UV Nonlinear Optical Crystals
Journal of the American Chemical Society, 2010, 132, 8779-8786
4102582 CIFB3 Be2 K O7C 1 2/c 110.405; 9.001; 6.559
90; 114.543; 90
558.8Shichao Wang; Ning Ye; Wei Li; Dan Zhao
Alkaline Beryllium Borate NaBeB3O6 and ABe2B3O7 (A = K, Rb) as UV Nonlinear Optical Crystals
Journal of the American Chemical Society, 2010, 132, 8779-8786
4102583 CIFB3 Be2 K O7P m n 217.639; 17.464; 4.376
90; 90; 90
583.8Shichao Wang; Ning Ye; Wei Li; Dan Zhao
Alkaline Beryllium Borate NaBeB3O6 and ABe2B3O7 (A = K, Rb) as UV Nonlinear Optical Crystals
Journal of the American Chemical Society, 2010, 132, 8779-8786
4102585 CIFB3 Be2 O7 RbP m n 217.687; 17.724; 4.393
90; 90; 90
598.5Shichao Wang; Ning Ye; Wei Li; Dan Zhao
Alkaline Beryllium Borate NaBeB3O6 and ABe2B3O7 (A = K, Rb) as UV Nonlinear Optical Crystals
Journal of the American Chemical Society, 2010, 132, 8779-8786
4101859 CIFB3 Bi Cd4 O10C 1 m 18.044; 15.913; 3.4891
90; 100.08; 90
439.7Wei-Long Zhang; Wen-Dan Cheng; Hao Zhang; Lei Geng; Chen-Sheng Lin; Zhang-Zhen He
A Strong Second-Harmonic Generation Material Cd4BiO(BO3)3 Originating from 3-Chromophore Asymmetric Structures
Journal of the American Chemical Society, 2010, 132, 1508-1509
4124632 CIFB3 Cl3 H3 N3P n m a14; 13.54; 3.95
90; 90; 90
748.762Coursen, D.L.; Hoard, J.L.
The Structure of B-Trichloroborazole
Journal of the American Chemical Society, 1952, 74, 1742-1750
4103784 CIFB3 H10 NP 1 21/n 110.358; 4.8041; 9.967
90; 115.141; 90
449Chang Won Yoon; Patrick J. Carroll; Larry G. Sneddon
Ammonia Triborane: A New Synthesis, Structural Determinations, and Hydrolytic Hydrogen-Release Properties
Journal of the American Chemical Society, 2009, 131, 855-864
4119071 CIFB3 H7 NP 1 21/n 110.4; 4.824; 9.997
90; 115.2; 90
453.812Reimann, C.; Nordman, C.E.
The molecular and crystal structures of ammonia-triborane
Journal of the American Chemical Society, 1959, 81, 3538-3543
4121298 CIFB4 Be4 Na2 O11P 18.8444; 15.2496; 12.7402
89.935; 110.35; 89.9883
1611.1Hongwei Huang; Lijuan Liu; Shifeng Jin; Wenjiao Yao; Yihe Zhang; Chuangtian Chen
Deep-Ultraviolet Nonlinear Optical Materials: Na2Be4B4O11 and LiNa5Be12B12O33
Journal of the American Chemical Society, 2013, 135, 18319-18322
4118150 CIFB4 Ce Cl O8C 1 c 16.5079; 11.2082; 9.7133
90; 105.25; 90
683.56Matthew J. Polinski; Daniel J. Grant; Shuao Wang; Evgeny V. Alekseev; Justin N. Cross; Eric M. Villa; Wulf Depmeier; Laura Gagliardi; Thomas E. Albrecht-Schmitt
Differentiating between Trivalent Lanthanides and Actinides
Journal of the American Chemical Society, 2012, 134, 10682-10692
4118149 CIFB4 Cl La O8C 1 c 16.5109; 11.2402; 9.7941
90; 105.228; 90
691.6Matthew J. Polinski; Daniel J. Grant; Shuao Wang; Evgeny V. Alekseev; Justin N. Cross; Eric M. Villa; Wulf Depmeier; Laura Gagliardi; Thomas E. Albrecht-Schmitt
Differentiating between Trivalent Lanthanides and Actinides
Journal of the American Chemical Society, 2012, 134, 10682-10692
4118154 CIFB4 Cl O8 PuC 1 c 16.4898; 11.174; 9.6183
90; 105.15; 90
673.2Matthew J. Polinski; Daniel J. Grant; Shuao Wang; Evgeny V. Alekseev; Justin N. Cross; Eric M. Villa; Wulf Depmeier; Laura Gagliardi; Thomas E. Albrecht-Schmitt
Differentiating between Trivalent Lanthanides and Actinides
Journal of the American Chemical Society, 2012, 134, 10682-10692
4101578 CIFB4 Cu Li6 O10P 14.8131; 6.4288; 7.0223
83.369; 71.623; 73.364
197.5Pan, Shilie; Smit, Jared P; Watkins, Byron; Marvel, Michael R; Stern, Charlotte L; Poeppelmeier, Kenneth R
Synthesis, crystal structure, and nonlinear optical properties of Li6CuB4O10: a congruently melting compound with isolated [CuB4O10]6- units.
Journal of the American Chemical Society, 2006, 128, 11631-11634
4118392 CIFB4 Fe4 Li4 O12P 1 21/c 110.3362; 8.8687; 10.1656
90; 91.514; 90
931.54Yuri Janssen; Derek S. Middlemiss; Shou-Hang Bo; Clare P. Grey; Peter G. Khalifah
Structural Modulation in the High Capacity Battery Cathode Material LiFeBO3
Journal of the American Chemical Society, 2012, 134, 12516-12527
4124316 CIFB4 H16 NpP 42/n m c :18.559; 8.559; 6.017
90; 90; 90
440.784Banks, R.H.; Templeton, D.H.; Edelstein, N.M.; Spencer, B.; Zalkin, A.
Volatility and molecular structure of neptunium(IV) borohydride
Journal of the American Chemical Society, 1980, 102, 620-623
4123979 CIFB4 H16 UP 41 21 27.49; 7.49; 13.24
90; 90; 90
742.765Bernstein, E.R.; Keiderling, T.A.; Lippard, S.J.; Mayerle, J.J.
Structure of uranium borohydride by single-crystal X-Ray diffraction
Journal of the American Chemical Society, 1972, 94, 2552-2553
4127852 CIFB4.27 K O3P -6 2 m6.072; 6.072; 3.469
90; 90; 120
110.764Kambe, Tetsuya; Hosono, Reina; Imaoka, Shotaro; Kuzume, Akiyoshi; Yamamoto, Kimihisa
Solution Phase Mass Synthesis of 2D Atomic Layer with Hexagonal Boron Network.
Journal of the American Chemical Society, 2019, 141, 12984-12988
4106477 CIFB5 Be6 Cs Na2 O15C 1 2 113.885; 4.4332; 10.874
90; 103.141; 90
651.8Shichao Wang; Ning Ye
Na2CsBe6B5O15: An Alkaline Beryllium Borate as a Deep-UV Nonlinear Optical Crystal
Journal of the American Chemical Society, 2011, 133, 11458-11461
4103070 CIFB5 I O9 Pb2P n n 211.561; 11.7; 6.524
90; 90; 90
882.5Yi-Zhi Huang; Li-Ming Wu; Xin-Tao Wu; Long-Hua Li; Ling Chen; Yong-Fan Zhang
Pb2B5O9I: An Iodide Borate with Strong Second Harmonic Generation
Journal of the American Chemical Society, 2010, 132, 12788-12789
4106144 CIFB6 Cl K3 O10R 3 m :H10.0624; 10.0624; 8.8361
90; 90; 120
774.8Hongping Wu; Shilie Pan; Kenneth R. Poeppelmeier; Hongyi Li; Dianzeng Jia; Zhaohui Chen; Xiaoyun Fan; Yun Yang; James M. Rondinelli; Haosu Luo
K3B6O10Cl: A New Structure Analogous to Perovskite with a Large Second Harmonic Generation Response and Deep UV Absorption Edge
Journal of the American Chemical Society, 2011, 133, 7786-7790
4112987 CIFB6 Cr H16P -14.3898; 5.694; 9.023
105.192; 93.81; 111.102
199.79Dean M. Goedde; Gregory S. Girolami
A New Class of CVD Precursors to Metal Borides: Cr(B3H8)2 and Related Octahydrotriborate Complexes
Journal of the American Chemical Society, 2004, 126, 12230-12231
4115016 CIFB6 Dy4 O15C 1 2/c 111.6938; 4.3777; 18.9304
90; 96.657; 90
962.6Hubert Huppertz; Benjamin von der Eltz
Multianvil High-Pressure Synthesis of Dy4B6O15: The First Oxoborate with Edge-Sharing BO4 Tetrahedra
Journal of the American Chemical Society, 2002, 124, 9376-9377
4119078 CIFB6 Dy4 O15C 1 2/c 111.6806; 4.3759; 18.9153
90; 96.703; 90
960.212von der Eltz, B.; Huppertz, H.
Multianvil high-pressure synthesis of Dy4 B6 O15: the first oxoborate with edge-sharing B O4 tetrahedra
Journal of the American Chemical Society, 2002, 124, 9376-9377
4119079 CIFB6 Ho O18 Sc Sr6R -3 :H12.285; 12.285; 9.268
90; 90; 120
1211.34Cox, J.R.; Douglas, A.K.; Alekel, T.; Schaffers, K.I.; Thompson, P.D.
New structural class of solid-state oxide
Journal of the American Chemical Society, 1990, 112, 7068-7069
4118153 CIFB6 O12 YR 3 c :H8.346; 8.346; 20.58
90; 90; 120
1241Matthew J. Polinski; Daniel J. Grant; Shuao Wang; Evgeny V. Alekseev; Justin N. Cross; Eric M. Villa; Wulf Depmeier; Laura Gagliardi; Thomas E. Albrecht-Schmitt
Differentiating between Trivalent Lanthanides and Actinides
Journal of the American Chemical Society, 2012, 134, 10682-10692
4102584 CIFB9 Be6 K3 O21P 1 21 17.4766; 13.2701; 9.3263
90; 111.272; 90
862.3Shichao Wang; Ning Ye; Wei Li; Dan Zhao
Alkaline Beryllium Borate NaBeB3O6 and ABe2B3O7 (A = K, Rb) as UV Nonlinear Optical Crystals
Journal of the American Chemical Society, 2010, 132, 8779-8786
4120491 CIFB9 Cs3 O21 Zn6C m c 218.4268; 19.2101; 14.5611
90; 90; 90
2357.1Yu, Hongwei; Wu, Hongping; Pan, Shilie; Yang, Zhihua; Hou, Xueling; Su, Xin; Jing, Qun; Poeppelmeier, Kenneth R.; Rondinelli, James M.
Cs3Zn6B9O21: A Chemically Benign Member of the KBBF Family Exhibiting the Largest Second Harmonic Generation Response.
Journal of the American Chemical Society, 2014, 136, 1264-1267
4114897 CIFB9 H14 KP 1 21/c 17.717; 11.674; 10.054
90; 95.09; 90
902.2Jonathan Bould; Robert Greatrex; John D. Kennedy; Daniel L. Ormsby; Michael G. S. Londesborough; Karen L. F. Callaghan; Mark Thornton-Pett; Trevor R. Spalding; Simon J. Teat; William Clegg; Hong Fang; Nigam P. Rath; Lawrence Barton
Structural Chemistry of arachno-Nonaboranes
Journal of the American Chemical Society, 2002, 124, 7429-7439
4107911 CIF
HKL
Ba Ca Fe3 Nd O8P m m a5.52075; 11.68876; 5.60301
90; 90; 90
361.566Christophe Tenailleau; Mathieu Allix; John B. Claridge; Maryvonne Hervieu; Michael F. Thomas; James P. Hirst; Matthew J. Rosseinsky
Modular Construction of Oxide Structures-Compositional Control of Transition Metal Coordination Environments
Journal of the American Chemical Society, 2008, 130, 7570-7583
4103704 CIFBa Co F4C m c 214.2173; 14.6573; 5.8656
90; 90; 90
362.58Sun Woo Kim; Hong Young Chang; P. Shiv Halasyamani
Selective Pure-Phase Synthesis of the Multiferroic BaMF4 (M = Mg, Mn, Co, Ni, and Zn) Family
Journal of the American Chemical Society, 2010, 132, 17684-17685
4124851 CIFBa Co O2.23P m -3 m4.072; 4.072; 4.072
90; 90; 90
67.519Strauss, S.W.; Fankuchen, I.; Ward, R.
Barium Cobalt Oxide of the Perowskite Type
Journal of the American Chemical Society, 1951, 73, 5084-5086
4124649 CIFBa Co O3P 63/m m c5.59; 5.59; 4.82
90; 90; 120
130.437Gushee, B.E.; Katz, L.; Ward, R.
The preparation of a barium cobalt oxide and other phases with similar structures
Journal of the American Chemical Society, 1957, 79, 5601-5603
4124015 CIFBa D Ga GeP 3 m 14.3344; 4.3344; 5.1895
90; 90; 120
84.433Evans, M.J.; Garcia-Garcia, F.J.; Holland, G.P.; Haeussermann, U.
Polyanionic gallium hydrides from Al B2-type precursors Ae Ga E (Ae = Ca, Sr, Ba; E = Si, Ge, Sn)
Journal of the American Chemical Society, 2008, 130, 12139-12147
4124014 CIFBa D Ga SiP 3 m 14.2776; 4.2776; 5.1948
90; 90; 120
82.319Evans, M.J.; Holland, G.P.; Garcia-Garcia, F.J.; Haeussermann, U.
Polyanionic gallium hydrides from Al B2-type precursors Ae Ga E (Ae = Ca, Sr, Ba; E = Si, Ge, Sn)
Journal of the American Chemical Society, 2008, 130, 12139-12147
4124016 CIFBa D Ga SnP 3 m 14.559; 4.559; 5.298
90; 90; 120
95.363Evans, M.J.; Holland, G.P.; Garcia-Garcia, F.J.; Haeussermann, U.
Polyanionic gallium hydrides from Al B2-type precursors Ae Ga E (Ae = Ca, Sr, Ba; E = Si, Ge, Sn)
Journal of the American Chemical Society, 2008, 130, 12139-12147
4123998 CIFBa D2 Ga2P -3 m 14.5286; 4.5286; 4.8991
90; 90; 120
87.011Bjoerling, T.; Haeussermann, U.
Polyanionic hydrides from polar intermetallics Ae E2 (Ae = Ca, Sr, Ba; E = Al, Ga, In)
Journal of the American Chemical Society, 2006, 128, 817-824
4127882 CIFBa F Mn0.5 TeP 4/n m m :14.4704; 4.4704; 9.634
90; 90; 90
192.53Chen, Haijie; McClain, Rebecca; He, Jiangang; Zhang, Chi; Olding, Jack N.; Dos Reis, Roberto; Bao, Jin-Ke; Hadar, Ido; Spanopoulos, Ioannis; Malliakas, Christos D.; He, Yihui; Chung, Duck Young; Kwok, Wai-Kwong; Weiss, Emily A.; Dravid, Vinayak P.; Wolverton, Christopher; Kanatzidis, Mercouri G.
Antiferromagnetic Semiconductor BaFMn<sub>0.5</sub>Te with Unique Mn Ordering and Red Photoluminescence.
Journal of the American Chemical Society, 2019, 141, 17421-17430
4127883 CIFBa F Mn0.5 TeC m m a6.3205; 6.3233; 9.6379
90; 90; 90
385.19Chen, Haijie; McClain, Rebecca; He, Jiangang; Zhang, Chi; Olding, Jack N.; Dos Reis, Roberto; Bao, Jin-Ke; Hadar, Ido; Spanopoulos, Ioannis; Malliakas, Christos D.; He, Yihui; Chung, Duck Young; Kwok, Wai-Kwong; Weiss, Emily A.; Dravid, Vinayak P.; Wolverton, Christopher; Kanatzidis, Mercouri G.
Antiferromagnetic Semiconductor BaFMn<sub>0.5</sub>Te with Unique Mn Ordering and Red Photoluminescence.
Journal of the American Chemical Society, 2019, 141, 17421-17430
4103703 CIFBa F4 MnC m c 214.237; 15.17; 6.0214
90; 90; 90
387Sun Woo Kim; Hong Young Chang; P. Shiv Halasyamani
Selective Pure-Phase Synthesis of the Multiferroic BaMF4 (M = Mg, Mn, Co, Ni, and Zn) Family
Journal of the American Chemical Society, 2010, 132, 17684-17685
4103705 CIFBa F4 NiC m c 214.1591; 14.492; 5.8078
90; 90; 90
350.06Sun Woo Kim; Hong Young Chang; P. Shiv Halasyamani
Selective Pure-Phase Synthesis of the Multiferroic BaMF4 (M = Mg, Mn, Co, Ni, and Zn) Family
Journal of the American Chemical Society, 2010, 132, 17684-17685
1010206 CIFBa F6 GeR -3 m :R4.83; 4.83; 4.83
98.02; 98.02; 98.02
109Hoard, J L; Vincent, W B
Structures of Complex Fluorides. Barium Fluorosilicate and Barium Fluorogermanate
Journal of the American Chemical Society, 1940, 62, 3126-3129
1010205 CIFBa F6 SiR -3 m :R4.75; 4.75; 4.75
97.97; 97.97; 97.97
103.7Hoard, J L; Vincent, W B
Structures of Complex Fluorides. Barium Fluorosilicate and Barium Fluorogermanate
Journal of the American Chemical Society, 1940, 62, 3126-3129
4124844 CIFBa Fe O3P m -3 m4.02; 4.02; 4.02
90; 90; 90
64.965Erchak, M.; Fankuchen, I.; Ward, R.
Reaction between Ferric Oxide and Barium Carbonate in the Solid Phase. Identification of Phases by X-Ray Diffraction
Journal of the American Chemical Society, 1946, 68, 2085-2093
4113918 CIFBa Fe2 Ho O5P m m a8.03183; 3.83589; 7.52198
90; 90; 90
231.746Patrick M. Woodward; Emmanuelle Suard; Pavel Karen
Structural Tuning of Charge, Orbital, and Spin Ordering in Double-Cell Perovskite Series between NdBaFe2O5 and HoBaFe2O5
Journal of the American Chemical Society, 2003, 125, 8889-8899
4113920 CIFBa Fe2 Ho O5P m m a8.02258; 3.84893; 7.54252
90; 90; 90
232.901Patrick M. Woodward; Emmanuelle Suard; Pavel Karen
Structural Tuning of Charge, Orbital, and Spin Ordering in Double-Cell Perovskite Series between NdBaFe2O5 and HoBaFe2O5
Journal of the American Chemical Society, 2003, 125, 8889-8899
4113922 CIFBa Fe2 Ho O5P m m m3.932787; 3.918529; 7.56186
90; 90; 90
116.534Patrick M. Woodward; Emmanuelle Suard; Pavel Karen
Structural Tuning of Charge, Orbital, and Spin Ordering in Double-Cell Perovskite Series between NdBaFe2O5 and HoBaFe2O5
Journal of the American Chemical Society, 2003, 125, 8889-8899
4113924 CIFBa Fe2 Ho O5P m m m3.93355; 3.92896; 7.57777
90; 90; 90
117.113Patrick M. Woodward; Emmanuelle Suard; Pavel Karen
Structural Tuning of Charge, Orbital, and Spin Ordering in Double-Cell Perovskite Series between NdBaFe2O5 and HoBaFe2O5
Journal of the American Chemical Society, 2003, 125, 8889-8899
4113926 CIFBa Fe2 Nd O5P 21 m a7.99949; 3.91587; 7.63343
90; 90; 90
239.117Patrick M. Woodward; Emmanuelle Suard; Pavel Karen
Structural Tuning of Charge, Orbital, and Spin Ordering in Double-Cell Perovskite Series between NdBaFe2O5 and HoBaFe2O5
Journal of the American Chemical Society, 2003, 125, 8889-8899
4113929 CIFBa Fe2 Nd O5P 21 m a8.00318; 3.92013; 7.64047
90; 90; 90
239.708Patrick M. Woodward; Emmanuelle Suard; Pavel Karen
Structural Tuning of Charge, Orbital, and Spin Ordering in Double-Cell Perovskite Series between NdBaFe2O5 and HoBaFe2O5
Journal of the American Chemical Society, 2003, 125, 8889-8899
4113932 CIFBa Fe2 Nd O5P m m m3.96584; 3.95339; 7.64046
90; 90; 90
119.791Patrick M. Woodward; Emmanuelle Suard; Pavel Karen
Structural Tuning of Charge, Orbital, and Spin Ordering in Double-Cell Perovskite Series between NdBaFe2O5 and HoBaFe2O5
Journal of the American Chemical Society, 2003, 125, 8889-8899
4113934 CIFBa Fe2 Nd O5P m m m3.969451; 3.958035; 7.64849
90; 90; 90
120.167Patrick M. Woodward; Emmanuelle Suard; Pavel Karen
Structural Tuning of Charge, Orbital, and Spin Ordering in Double-Cell Perovskite Series between NdBaFe2O5 and HoBaFe2O5
Journal of the American Chemical Society, 2003, 125, 8889-8899
4113937 CIFBa Fe2 Nd O5P m m m3.97079; 3.96456; 7.6583
90; 90; 90
120.56Patrick M. Woodward; Emmanuelle Suard; Pavel Karen
Structural Tuning of Charge, Orbital, and Spin Ordering in Double-Cell Perovskite Series between NdBaFe2O5 and HoBaFe2O5
Journal of the American Chemical Society, 2003, 125, 8889-8899
4113939 CIFBa Fe2 Nd O5P m m m3.97431; 3.96949; 7.66813
90; 90; 90
120.972Patrick M. Woodward; Emmanuelle Suard; Pavel Karen
Structural Tuning of Charge, Orbital, and Spin Ordering in Double-Cell Perovskite Series between NdBaFe2O5 and HoBaFe2O5
Journal of the American Chemical Society, 2003, 125, 8889-8899
4107896 CIF
HKL
Ba Fe2 O4B b 21 m18.99784; 5.38025; 8.43848
90; 90; 90
862.523Christophe Tenailleau; Mathieu Allix; John B. Claridge; Maryvonne Hervieu; Michael F. Thomas; James P. Hirst; Matthew J. Rosseinsky
Modular Construction of Oxide Structures-Compositional Control of Transition Metal Coordination Environments
Journal of the American Chemical Society, 2008, 130, 7570-7583
4124024 CIFBa Ga Ge HP 3 m 14.3758; 4.3758; 5.2687
90; 90; 120
87.367Evans, M.J.; Holland, G.P.; Garcia-Garcia, F.J.; Haeussermann, U.
Polyanionic gallium hydrides from Al B2-type precursors Ae Ga E (Ae = Ca, Sr, Ba; E = Si, Ge, Sn)
Journal of the American Chemical Society, 2008, 130, 12139-12147
4124023 CIFBa Ga H SiP 3 m 14.3015; 4.3015; 5.2703
90; 90; 120
84.451Evans, M.J.; Holland, G.P.; Haeussermann, U.; Garcia-Garcia, F.J.
Polyanionic gallium hydrides from Al B2-type precursors Ae Ga E (Ae = Ca, Sr, Ba; E = Si, Ge, Sn)
Journal of the American Chemical Society, 2008, 130, 12139-12147
4124025 CIFBa Ga H SnP 3 m 14.5914; 4.5914; 5.4257
90; 90; 120
99.055Evans, M.J.; Holland, G.P.; Haeussermann, U.; Garcia-Garcia, F.J.
Polyanionic gallium hydrides from Al B2-type precursors Ae Ga E (Ae = Ca, Sr, Ba; E = Si, Ge, Sn)
Journal of the American Chemical Society, 2008, 130, 12139-12147
4102830 CIFBa Ge5P m n a10.727; 9.2844; 14.794
90; 90; 90
1473.4Umut Aydemir; Lev Akselrud; Wilder Carrillo-Cabrera; Christophe Candolfi; Niels Oeschler; Michael Baitinger; Frank Steglich; Yuri Grin
BaGe5: A New Type of Intermetallic Clathrate
Journal of the American Chemical Society, 2010, 132, 10984-10985
4125072 CIFBa Hg Se2P m c 214.358; 14.881; 7.59
90; 90; 90
492.22Li, Chao; Yin, Wenlong; Gong, Pifu; Li, Xiaoshuang; Zhou, Molin; Mar, Arthur; Lin, Zheshuai; Yao, Jiyong; Wu, Yicheng; Chen, Chuangtian
Trigonal Planar [HgSe3](4-) Unit: A New Kind of Basic Functional Group in IR Nonlinear Optical Materials with Large Susceptibility and Physicochemical Stability.
Journal of the American Chemical Society, 2016, 138, 6135-6138
4104569 CIFBa Hg2 Tl2P 42/m n m10.606; 10.606; 5.159
90; 90; 90
580.32Jing-Cao Dai; Shalabh Gupta; Olivier Gourdon; Hyun-Jeong Kim; John D. Corbett
BaHg2Tl2. An Unusual Polar Intermetallic Phase with Strong Differentiation between the Neighboring Elements Mercury and Thallium
Journal of the American Chemical Society, 2009, 131, 8677-8682
4104570 CIFBa Hg2 Tl2P 42/m n m10.5933; 10.5933; 5.1594
90; 90; 90
578.98Jing-Cao Dai; Shalabh Gupta; Olivier Gourdon; Hyun-Jeong Kim; John D. Corbett
BaHg2Tl2. An Unusual Polar Intermetallic Phase with Strong Differentiation between the Neighboring Elements Mercury and Thallium
Journal of the American Chemical Society, 2009, 131, 8677-8682
4104672 CIFBa I5 Nb O16C 1 c 113.9886; 7.4843; 14.8896
90; 112.969; 90
1435.27Chuan-Fu Sun; Chun-Li Hu; Xiang Xu; Ji-Bei Ling; Ting Hu; Fang Kong; Xi-Fa Long; Jiang-Gao Mao
BaNbO(IO3)5: A New Polar Material with a Very Large SHG Response
Journal of the American Chemical Society, 2009, 131, 9486-9487
4124002 CIFBa Ir O2.94C 1 2/m 19.9554; 5.7434; 13.8049
90; 119.231; 90
688.819Cheng Jinguang; Alonso, J.A.; Zhou Jianshi; Suard, E.; Goodenough, J.B.
A new perovskite polytype in the high-pressure sequence of Ba Ir O3
Journal of the American Chemical Society, 2009, 131, 7461-7469
4124001 CIFBa Ir O3C 1 2/m 110.0046; 5.75362; 15.1839
90; 103.27; 90
850.689Cheng Jinguang; Alonso, J.A.; Suard, E.; Goodenough, J.B.; Zhou Jianshi
A new perovskite polytype in the high-pressure sequence of Ba Ir O3
Journal of the American Chemical Society, 2009, 131, 7461-7469
4124003 CIFBa Ir O3C 1 2/c 15.7483; 9.939; 14.3582
90; 91.319; 90
820.1Cheng Jinguang; Alonso, J.A.; Zhou Jianshi; Suard, E.; Goodenough, J.B.
A new perovskite polytype in the high-pressure sequence of Ba Ir O3
Journal of the American Chemical Society, 2009, 131, 7461-7469
4124004 CIFBa Ir O3P m -3 m4.0611; 4.0611; 4.0611
90; 90; 90
66.978Cheng Jinguang; Alonso, J.A.; Suard, E.; Zhou Jianshi; Goodenough, J.B.
A new perovskite polytype in the high-pressure sequence of Ba Ir O3
Journal of the American Chemical Society, 2009, 131, 7461-7469
4113867 CIFBa Mo2 O9 TeP 1 21 15.5407; 7.4651; 8.8448
90; 90.841; 90
365.8Hyun-Seup Ra; Kang Min Ok; P. Shiv Halasyamani
Combining Second-Order Jahn-Teller Distorted Cations to Create Highly Efficient SHG Materials: Synthesis, Characterization, and NLO Properties of BaTeM2O9 (M = Mo6+ or W6+)
Journal of the American Chemical Society, 2003, 125, 7764-7765
4123984 CIFBa Ni S2P 4/n m m :24.43; 4.43; 8.893
90; 90; 90
174.524Grey, I.E.; Steinfink, H.
Crystal structure and properties of barium nickel sulfide, a square-pyramidal nickel(II) compound
Journal of the American Chemical Society, 1970, 92, 5093-5095
4124842 CIFBa O3 TiP m -3 m4.0335; 4.0335; 4.0335
90; 90; 90
65.622Edwards, J.W.; Speiser, R.; Johnston, H.L.
Structure of Barium Titanate at Elevated Temperatures
Journal of the American Chemical Society, 1951, 73, 2934-2935
4114760 CIFBa O7 Te3P 1 21/n 110.2765; 5.251; 13.5499
90; 98.98; 90
722.22Magnus G. Johnston; William T. A. Harrison
Lone-Pair Self-Containment in Tellurite Tubes: Hydrothermal Syntheses and Structures of BaTe3O7 and BaTe4O9
Journal of the American Chemical Society, 2002, 124, 4576-4577
4113868 CIFBa O9 Te W2P 1 21 15.49; 7.446; 8.887
90; 90.37; 90
363.3Hyun-Seup Ra; Kang Min Ok; P. Shiv Halasyamani
Combining Second-Order Jahn-Teller Distorted Cations to Create Highly Efficient SHG Materials: Synthesis, Characterization, and NLO Properties of BaTeM2O9 (M = Mo6+ or W6+)
Journal of the American Chemical Society, 2003, 125, 7764-7765
4114761 CIFBa O9 Te4C 1 2/c 119.5354; 4.5099; 23.3021
90; 112.961; 90
1890.32Magnus G. Johnston; William T. A. Harrison
Lone-Pair Self-Containment in Tellurite Tubes: Hydrothermal Syntheses and Structures of BaTe3O7 and BaTe4O9
Journal of the American Chemical Society, 2002, 124, 4576-4577
4113101 CIFBa PtP 63/m m c5.057; 5.057; 5.42
90; 90; 120
120.04Andrey Karpov; Jürgen Nuss; Ulrich Wedig; Martin Jansen
Covalently Bonded [Pt]-Chains in BaPt: Extension of the Zintl-Klemm Concept to Anionic Transition Metals?
Journal of the American Chemical Society, 2004, 126, 14123-14128
4102184 CIFBa0.208 Co0.208 F0.042 O0.542P 63/m m c5.6995; 5.6995; 23.799
90; 90; 120
669.5Olivier Mentré; Houria Kabbour; Ghislaine Ehora; Grégory Tricot; Sylvie Daviero-Minaud; Myung-Hwan Whangbo
Anion-Vacancy-Induced Magneto-Crystalline Anisotropy in Fluorine-Doped hexagonal Cobaltites
Journal of the American Chemical Society, 2010, 132, 4865-4875
4107910 CIF
HKL
Ba0.41 Ca0.39 Fe1.25 Nd0.45 O3.25I m m a5.56053; 38.7107; 5.58133
90; 90; 90
1201.39Christophe Tenailleau; Mathieu Allix; John B. Claridge; Maryvonne Hervieu; Michael F. Thomas; James P. Hirst; Matthew J. Rosseinsky
Modular Construction of Oxide Structures-Compositional Control of Transition Metal Coordination Environments
Journal of the American Chemical Society, 2008, 130, 7570-7583
4102185 CIFBa0.417 Co0.417 F0.083 O1.083P 63/m m c5.71; 5.71; 23.925
90; 90; 120
675.5Olivier Mentré; Houria Kabbour; Ghislaine Ehora; Grégory Tricot; Sylvie Daviero-Minaud; Myung-Hwan Whangbo
Anion-Vacancy-Induced Magneto-Crystalline Anisotropy in Fluorine-Doped hexagonal Cobaltites
Journal of the American Chemical Society, 2010, 132, 4865-4875
4134320 CIFBa0.5 F2 H O Te0.5P m n 217.5013; 8.6517; 4.2142
90; 90; 90
273.5Zhou, Jinjie; Wu, Hongping; Yu, Hongwei; Jiang, Shutong; Hu, Zhanggui; Wang, Jiyang; Wu, Yicheng; Halasyamani, P. Shiv
BaF<sub>2</sub>TeF<sub>2</sub>(OH)<sub>2</sub>: A UV Nonlinear Optical Fluorotellurite Material Designed by Band-Gap Engineering.
Journal of the American Chemical Society, 2020
4118236 CIFBa0.8 Fe O2 Sr0.2P 4/m m m8.30167; 8.30167; 3.84632
90; 90; 90
265.08Takafumi Yamamoto; Yoji Kobayashi; Naoaki Hayashi; Cédric Tassel; Takashi Saito; Shoji Yamanaka; Mikio Takano; Kenji Ohoyama; Yuichi Shimakawa; Kazuyoshi Yoshimura; Hiroshi Kageyama
(Sr1-xBax)FeO2 (0.4 <=x<= 1): A New Oxygen-Deficient Perovskite Structure
Journal of the American Chemical Society, 2012, 134, 11444-11454
4107895 CIF
HKL
Ba0.81 Ca0.78 Fe2.5 Nd0.91 O6.43I m m a5.58392; 38.9909; 5.61065
90; 90; 90
1221.56Christophe Tenailleau; Mathieu Allix; John B. Claridge; Maryvonne Hervieu; Michael F. Thomas; James P. Hirst; Matthew J. Rosseinsky
Modular Construction of Oxide Structures-Compositional Control of Transition Metal Coordination Environments
Journal of the American Chemical Society, 2008, 130, 7570-7583
4107909 CIF
HKL
Ba1.62 Ca1.56 Fe5 Nd1.82 O13I 2 m b5.56049; 38.71093; 5.58134
90; 90; 90
1201.39Christophe Tenailleau; Mathieu Allix; John B. Claridge; Maryvonne Hervieu; Michael F. Thomas; James P. Hirst; Matthew J. Rosseinsky
Modular Construction of Oxide Structures-Compositional Control of Transition Metal Coordination Environments
Journal of the American Chemical Society, 2008, 130, 7570-7583
4119283 CIFBa13.3 Ga36.4 Rb9.9 Sn99.6F d -3 m :217.0367; 17.0367; 17.0367
90; 90; 90
4944.9Marion C. Schäfer; Svilen Bobev
Tin Clathrates with the Type II Structure
Journal of the American Chemical Society, 2013, 135, 1696-1699
4119284 CIFBa14 Ga30.4 K2 Sn105.6F d -3 m :217.0136; 17.0136; 17.0136
90; 90; 90
4924.8Marion C. Schäfer; Svilen Bobev
Tin Clathrates with the Type II Structure
Journal of the American Chemical Society, 2013, 135, 1696-1699
4119285 CIFBa14 Ga30.4 K2 Sn105.6F d -3 m :217.0235; 17.0235; 17.0235
90; 90; 90
4933.4Marion C. Schäfer; Svilen Bobev
Tin Clathrates with the Type II Structure
Journal of the American Chemical Society, 2013, 135, 1696-1699
4119287 CIFBa14 Ga30.4 K2 Sn105.6F d -3 m :217.049; 17.049; 17.049
90; 90; 90
4955.6Marion C. Schäfer; Svilen Bobev
Tin Clathrates with the Type II Structure
Journal of the American Chemical Society, 2013, 135, 1696-1699
4119286 CIFBa15 Ga30.4 K2 Sn105.6F d -3 m :217.0292; 17.0292; 17.0292
90; 90; 90
4938.4Marion C. Schäfer; Svilen Bobev
Tin Clathrates with the Type II Structure
Journal of the American Chemical Society, 2013, 135, 1696-1699
4119279 CIFBa16 Cs8 Ga39.7 Sn96.3F d -3 m :217.0113; 17.0113; 17.0113
90; 90; 90
4922.8Marion C. Schäfer; Svilen Bobev
Tin Clathrates with the Type II Structure
Journal of the American Chemical Society, 2013, 135, 1696-1699
4119280 CIFBa16 Cs8 Ga39.7 Sn96.3F d -3 m :217.0145; 17.0145; 17.0145
90; 90; 90
4925.6Marion C. Schäfer; Svilen Bobev
Tin Clathrates with the Type II Structure
Journal of the American Chemical Society, 2013, 135, 1696-1699
4119281 CIFBa16 Cs8 Ga39.7 Sn96.3F d -3 m :217.0283; 17.0283; 17.0283
90; 90; 90
4937.6Marion C. Schäfer; Svilen Bobev
Tin Clathrates with the Type II Structure
Journal of the American Chemical Society, 2013, 135, 1696-1699
4119282 CIFBa16 Cs8 Ga39.7 Sn96.3F d -3 m :217.0347; 17.0347; 17.0347
90; 90; 90
4943.1Marion C. Schäfer; Svilen Bobev
Tin Clathrates with the Type II Structure
Journal of the American Chemical Society, 2013, 135, 1696-1699
4119288 CIFBa16 Ga32.1 Na0 Sn103.9F d -3 m :216.9963; 16.9963; 16.9963
90; 90; 90
4909.8Marion C. Schäfer; Svilen Bobev
Tin Clathrates with the Type II Structure
Journal of the American Chemical Society, 2013, 135, 1696-1699
4114707 CIFBa16 Na204 Sn309.48F -4 3 m25.1998; 25.1998; 25.1998
90; 90; 90
16002.6Svilen Bobev; Slavi C. Sevov
Naked Clusters of 56 Tin Atoms in the Solid State
Journal of the American Chemical Society, 2002, 124, 3359-3365
4114709 CIFBa16 Na204 Sn309.5F -4 3 m25.2029; 25.2029; 25.2029
90; 90; 90
16008.5Svilen Bobev; Slavi C. Sevov
Naked Clusters of 56 Tin Atoms in the Solid State
Journal of the American Chemical Society, 2002, 124, 3359-3365
4114706 CIFBa16 Na204 Sn309.95F -4 3 m25.2041; 25.2041; 25.2041
90; 90; 90
16010.8Svilen Bobev; Slavi C. Sevov
Naked Clusters of 56 Tin Atoms in the Solid State
Journal of the American Chemical Society, 2002, 124, 3359-3365
4114708 CIFBa16 Na204 Sn322.38F -4 3 m25.0534; 25.0534; 25.0534
90; 90; 90
15725.3Svilen Bobev; Slavi C. Sevov
Naked Clusters of 56 Tin Atoms in the Solid State
Journal of the American Chemical Society, 2002, 124, 3359-3365
4106492 CIFBa19 Cl12.54 N61.46 O10.54 P36F m -3 c26.8541; 26.8541; 26.8541
90; 90; 90
19365.6Stefan J. Sedlmaier; Markus Döblinger; Oliver Oeckler; Johannes Weber; Jörn Schmedt auf der Günne; Wolfgang Schnick
Unprecedented Zeolite-Like Framework Topology Constructed from Cages with 3-Rings in a Barium Oxonitridophosphate
Journal of the American Chemical Society, 2011, 133, 12069-12078
4107935 CIFBa2 F2 Fe2 O S2I 4/m m m4.12377; 4.12377; 19.0885
90; 90; 90
324.609Houria Kabbour; Etienne Janod; Benoît Corraze; Michel Danot; Changhoon Lee; Myung-Hwan Whangbo; Laurent Cario
Structure and Magnetic Properties of Oxychalcogenides A2F2Fe2OQ2 (A = Sr, Ba; Q = S, Se) with Fe2O Square Planar Layers Representing an Antiferromagnetic Checkerboard Spin Lattice
Journal of the American Chemical Society, 2008, 130, 8261-8270
4107933 CIFBa2 F2 Fe2 O Se2I 4/m m m4.1946; 4.1946; 19.522
90; 90; 90
343.48Houria Kabbour; Etienne Janod; Benoît Corraze; Michel Danot; Changhoon Lee; Myung-Hwan Whangbo; Laurent Cario
Structure and Magnetic Properties of Oxychalcogenides A~2~F~2~Fe~2~OQ~2 (A = Sr, Ba; Q = S, Se) with Fe2O Square Planar Layers Representing an Antiferromagnetic Checkerboard Spin Lattice
Journal of the American Chemical Society, 2008, 130, 8261-8270
4124486 CIFBa2 N O3 VP n m a7.70736; 5.92871; 10.50584
90; 90; 90
480.061Clarke, S.J.; Puyet, M.; Chalker, P.R.; Holman, J.; Michie, C.W.; Rosseinsky, M.J.
A first transition series pseudotetrahedral oxynitride anion: synthesis and characterization of Ba2 V O3 N
Journal of the American Chemical Society, 2002, 124, 3337-3342
4116209 CIFBa2 Ni Si3P -6 2 m11.392; 11.392; 3.938
90; 90; 120
442.6Joanna Goodey; Jianggao Mao; Arnold M. Guloy
Ba2NiSi3: A One-Dimensional Solid-State Metallocene Analog
Journal of the American Chemical Society, 2000, 122, 10478-10479
4121993 CIFBa2 O15 P5 RbP 1 c 18.6814; 7.3122; 13.837
90; 128.498; 90
687.44Zhao, Sangen; Gong, Pifu; Luo, Siyang; Bai, Lei; Lin, Zheshuai; Ji, Chengmin; Chen, Tianliang; Hong, Maochun; Luo, Junhua
Deep-Ultraviolet Transparent Phosphates RbBa2(PO3)5 and Rb2Ba3(P2O7)2 Show Nonlinear Optical Activity from Condensation of [PO4](3-) Units.
Journal of the American Chemical Society, 2014, 136, 8560-8563
4128550 CIFBa2 P6 Si3P n a 219.6272; 9.1437; 11.9261
90; 90; 90
1049.83Mark, Justin; Wang, Jian; Wu, Kui; Lo, Jeane Gladys; Lee, Shannon; Kovnir, Kirill
Ba<sub>2</sub>Si<sub>3</sub>P<sub>6</sub>: 1D Nonlinear Optical Material with Thermal Barrier Chains.
Journal of the American Chemical Society, 2019, 141, 11976-11983
4117781 CIFBa23 Ga8 S38 Sb2C m c 219.611; 32.246; 12.883
90; 90; 90
3993Mei-Chun Chen; Li-Ming Wu; Hua Lin; Liu-Jiang Zhou; Ling Chen
Disconnection Enhances the Second Harmonic Generation Response: Synthesis and Characterization of Ba23Ga8Sb2S38
Journal of the American Chemical Society, 2012, 134, 6058-6060
4117481 CIF
HKL
Ba3 Bi Ir2 O9C 1 2/c 15.94197; 10.24152; 14.97189
90; 92.3182; 90
910.366Wojciech Miiller; Maxim Avdeev; Qingdi Zhou; Brendan J. Kennedy; Neeraj Sharma; Ramzi Kutteh; Gordon J. Kearley; Siegber Schmid; Kevin S. Knight; Peter E. R. Blanchard; Chris D. Ling
Giant Magnetoelastic Effect at the Opening of a Spin-Gap in Ba3BiIr2O9
Journal of the American Chemical Society, 2012, 134, 3265-3270
4117483 CIF
HKL
Ba3 Bi Ir2 O9C 1 2/c 15.94251; 10.24416; 14.972
90; 92.2969; 90
910.704Wojciech Miiller; Maxim Avdeev; Qingdi Zhou; Brendan J. Kennedy; Neeraj Sharma; Ramzi Kutteh; Gordon J. Kearley; Siegber Schmid; Kevin S. Knight; Peter E. R. Blanchard; Chris D. Ling
Giant Magnetoelastic Effect at the Opening of a Spin-Gap in Ba3BiIr2O9
Journal of the American Chemical Society, 2012, 134, 3265-3270
4117484 CIF
HKL
Ba3 Bi Ir2 O9C 1 2/c 15.93816; 10.24207; 14.85187
90; 92.2902; 90
902.555Wojciech Miiller; Maxim Avdeev; Qingdi Zhou; Brendan J. Kennedy; Neeraj Sharma; Ramzi Kutteh; Gordon J. Kearley; Siegber Schmid; Kevin S. Knight; Peter E. R. Blanchard; Chris D. Ling
Giant Magnetoelastic Effect at the Opening of a Spin-Gap in Ba3BiIr2O9
Journal of the American Chemical Society, 2012, 134, 3265-3270
4120695 CIFBa3 Br O10 P3P 21 21 217.1722; 11.364; 13.998
90; 90; 90
1140.9Yu, Peng; Wu, Li-Ming; Zhou, Liu-Jiang; Chen, Ling
Deep-Ultraviolet Nonlinear Optical Crystals: Ba3P3O10X (X = Cl, Br).
Journal of the American Chemical Society, 2014, 136, 480-487
4120694 CIFBa3 Cl O10 P3P c a 2114.2771; 5.5968; 14.1592
90; 90; 90
1131.41Yu, Peng; Wu, Li-Ming; Zhou, Liu-Jiang; Chen, Ling
Deep-Ultraviolet Nonlinear Optical Crystals: Ba3P3O10X (X = Cl, Br).
Journal of the American Chemical Society, 2014, 136, 480-487
4117365 CIFBa3 Cl2 Cs Ga5 Se10I -48.7348; 8.7348; 15.697
90; 90; 90
1197.6Peng Yu; Liu-Jiang Zhou; Ling Chen
Noncentrosymmetric Inorganic Open-Framework Chalcohalides with Strong Middle IR SHG and Red Emission: Ba3AGa5Se10Cl2 (A = Cs, Rb, K)
Journal of the American Chemical Society, 2012, 134, 2227-2235
4117367 CIFBa3 Cl2 Ga5 K Se10I -48.6341; 8.6341; 15.644
90; 90; 90
1166.2Peng Yu; Liu-Jiang Zhou; Ling Chen
Noncentrosymmetric Inorganic Open-Framework Chalcohalides with Strong Middle IR SHG and Red Emission: Ba3AGa5Se10Cl2 (A = Cs, Rb, K)
Journal of the American Chemical Society, 2012, 134, 2227-2235
4117366 CIFBa3 Cl2 Ga5 Rb Se10I -48.6629; 8.6629; 15.6379
90; 90; 90
1173.56Peng Yu; Liu-Jiang Zhou; Ling Chen
Noncentrosymmetric Inorganic Open-Framework Chalcohalides with Strong Middle IR SHG and Red Emission: Ba3AGa5Se10Cl2 (A = Cs, Rb, K)
Journal of the American Chemical Society, 2012, 134, 2227-2235
4115315 CIFBa3 Li O9 Ru2P 63/m m c5.782; 5.782; 14.149
90; 90; 120
409.65Katharine E. Stitzer; Mark D. Smith; William R. Gemmill; Hans-Conrad zur Loye
Novel Mixed-Valent (V/VI) Triple Perovskite Ruthenates: Observation of a Complex Low-Temperature Structural and Magnetic Transition
Journal of the American Chemical Society, 2002, 124, 13877-13885
4115316 CIFBa3 Na O9 Ru2P 63/m m c5.8729; 5.8729; 14.4676
90; 90; 120
432.15Katharine E. Stitzer; Mark D. Smith; William R. Gemmill; Hans-Conrad zur Loye
Novel Mixed-Valent (V/VI) Triple Perovskite Ruthenates: Observation of a Complex Low-Temperature Structural and Magnetic Transition
Journal of the American Chemical Society, 2002, 124, 13877-13885
4115317 CIFBa3 Na O9 Ru2C m c m11.7282; 20.3541; 14.4856
90; 90; 90
3458Katharine E. Stitzer; Mark D. Smith; William R. Gemmill; Hans-Conrad zur Loye
Novel Mixed-Valent (V/VI) Triple Perovskite Ruthenates: Observation of a Complex Low-Temperature Structural and Magnetic Transition
Journal of the American Chemical Society, 2002, 124, 13877-13885
4125022 CIFBa3 O14 P2 Te Zn3P 3 2 18.4744; 8.4744; 5.2818
90; 90; 120
328.5Yu, Hongwei; Young, Joshua; Wu, Hongping; Zhang, Weiguo; Rondinelli, James M.; Halasyamani, P. Shiv
Electronic, Crystal Chemistry, and Nonlinear Optical Property Relationships in the Dugganite A3B3CD2O14 Family.
Journal of the American Chemical Society, 2016, 138, 4984-4989
4121994 CIFBa3 O14 P4 Rb2P 21 21 218.9487; 9.4087; 18.4277
90; 90; 90
1551.53Zhao, Sangen; Gong, Pifu; Luo, Siyang; Bai, Lei; Lin, Zheshuai; Ji, Chengmin; Chen, Tianliang; Hong, Maochun; Luo, Junhua
Deep-Ultraviolet Transparent Phosphates RbBa2(PO3)5 and Rb2Ba3(P2O7)2 Show Nonlinear Optical Activity from Condensation of [PO4](3-) Units.
Journal of the American Chemical Society, 2014, 136, 8560-8563
4124646 CIFBa3 O9 Sr Ta2P -3 m 15.95; 5.95; 7.47
90; 90; 120
229.026Galasso, F.; Katz, L.; Barrante, J.R.
Alkaline earth-tantalum-oxygen phases including the crystal structure of an ordered perovskite compound, Ba3 Sr Ta2 O9
Journal of the American Chemical Society, 1961, 83, 2830-2832
4105679 CIFBa4 Co2 Cu3.89 O4 S4I 4/m m m4.0711; 4.0711; 18.9094
90; 90; 90
313.402Catherine F. Smura; Dinah R. Parker; Mohamed Zbiri; Mark R. Johnson; Zoltán A. Gál; Simon J. Clarke
High-Spin Cobalt(II) Ions in Square Planar Coordination: Structures and Magnetism of the Oxysulfides Sr2CoO2Cu2S2 and Ba2CoO2Cu2S2 and Their Solid Solution
Journal of the American Chemical Society, 2011, 133, 2691-2705
4124776 CIFBa8 Fe8 O21F m -3 m8.05; 8.05; 8.05
90; 90; 90
521.66Erchak, M.; Ward, R.; Fankuchen, I.
Reaction between Ferric Oxide and Barium Carbonate in the Solid Phase. Identification of Phases by X-Ray Diffraction
Journal of the American Chemical Society, 1946, 68, 2085-2093
4124475 CIFBe Cl15 K3 Zr6C 1 2/c 116.372; 11.396; 14.071
90; 92.74; 90
2622.3Ziebarth, R.P.; Corbett, J.D.
Cluster Framework Structures and Relationships. Two Compounds with a New Connectivity, K2 Zr6 Cl15 B and K3 Zr6 Cl15 Be
Journal of the American Chemical Society, 1988, 110, 1132-1139
4124122 CIFBe Cl2I -4 3 m19.79146; 19.79146; 19.79146
90; 90; 90
7752.35Zwijnenburg, M.A.; Cora, F.; Bell, R.G.
Isomorphism of anhydrous tetrahedral halides and silicon chalcogenides: energy landscape of crystalline Be F2, Be Cl3, Si O2, and Si S2
Journal of the American Chemical Society, 2008, 130, 11082-11087
4124123 CIFBe Cl2P 3211.51593; 11.51593; 8.400845
90; 90; 120
964.832Zwijnenburg, M.A.; Cora, F.; Bell, R.G.
Isomorphism of anhydrous tetrahedral halides and silicon chalcogenides: energy landscape of crystalline Be F2, Be Cl3, Si O2, and Si S2
Journal of the American Chemical Society, 2008, 130, 11082-11087
4124124 CIFBe Cl2P -4 3 n9.845269; 9.845269; 9.845269
90; 90; 90
954.295Zwijnenburg, M.A.; Cora, F.; Bell, R.G.
Isomorphism of anhydrous tetrahedral halides and silicon chalcogenides: energy landscape of crystalline Be F2, Be Cl3, Si O2, and Si S2
Journal of the American Chemical Society, 2008, 130, 11082-11087
4124119 CIFBe F2C 1 2/c 16.97192; 12.02685; 6.96194
90; 120.02; 90
505.449Zwijnenburg, M.A.; Bell, R.G.; Cora, F.
Isomorphism of anhydrous tetrahedral halides and silicon chalcogenides: energy landscape of crystalline Be F2, Be Cl3, Si O2, and Si S2
Journal of the American Chemical Society, 2008, 130, 11082-11087
4124120 CIFBe F2P -4 3 n8.529749; 8.529749; 8.529749
90; 90; 90
620.596Zwijnenburg, M.A.; Cora, F.; Bell, R.G.
Isomorphism of anhydrous tetrahedral halides and silicon chalcogenides: energy landscape of crystalline Be F2, Be Cl3, Si O2, and Si S2
Journal of the American Chemical Society, 2008, 130, 11082-11087
4124121 CIFBe F2R -3 m :H13.1285; 13.1285; 14.42939
90; 90; 120
2153.82Zwijnenburg, M.A.; Cora, F.; Bell, R.G.
Isomorphism of anhydrous tetrahedral halides and silicon chalcogenides: energy landscape of crystalline Be F2, Be Cl3, Si O2, and Si S2
Journal of the American Chemical Society, 2008, 130, 11082-11087
4103451 CIFBe H2 K2 O8 Si4C 1 c 112.1773; 7.0903; 12.8804
90; 104.209; 90
1078.08Jennifer A. Armstrong; Mark T. Weller
Beryllosilicate Frameworks and Zeolites
Journal of the American Chemical Society, 2010, 132, 15679-15686
4103445 CIFBe Na2 O14 Si5I -4 3 d13.3184; 13.3184; 13.3184
90; 90; 90
2362.41Jennifer A. Armstrong; Mark T. Weller
Beryllosilicate Frameworks and Zeolites
Journal of the American Chemical Society, 2010, 132, 15679-15686
4103444 CIFBe0.25 K0.5 O3.75 SiC 2 2 219.6631; 12.2031; 9.9913
90; 90; 90
1178.17Jennifer A. Armstrong; Mark T. Weller
Beryllosilicate Frameworks and Zeolites
Journal of the American Chemical Society, 2010, 132, 15679-15686
4103446 CIFBe12 Na4 O4 Si4I -49.8276; 9.8276; 9.6372
90; 90; 90
930.78Jennifer A. Armstrong; Mark T. Weller
Beryllosilicate Frameworks and Zeolites
Journal of the American Chemical Society, 2010, 132, 15679-15686
4113113 CIFBe13 CeF m -3 c10.376; 10.376; 10.376
90; 90; 90
1117.1Zakiya S. Wilson; Robin T. Macaluso; E. D. Bauer; J. L. Smith; J. D. Thompson; Z. Fisk; George G. Stanley; Julia Y. Chan
Rare Beryllium Icosahedra in the Intermediate Valence Compound CeBe13
Journal of the American Chemical Society, 2004, 126, 13926-13927
4103443 CIFBe2 Na5 O57 Si18P 21 21 29.6889; 10.0184; 11.8966
90; 90; 90
1154.77Jennifer A. Armstrong; Mark T. Weller
Beryllosilicate Frameworks and Zeolites
Journal of the American Chemical Society, 2010, 132, 15679-15686
4103943 CIFBi Cs5 P4 Se12P m c 217.5357; 13.7783; 28.0807
90; 90; 90
2915.59In Chung; Jung-Hwan Song; Joon I. Jang; Arthur J. Freeman; John B. Ketterson; Mercouri G. Kanatzidis
Flexible Polar Nanowires of Cs5BiP4Se12 from Weak Interactions between Coordination Complexes: Strong Nonlinear Optical Second Harmonic Generation
Journal of the American Chemical Society, 2009, 131, 2647-2656
4126512 CIFBi Cu2 H3 O10 S TeP 1 21/c 19.591; 6.323; 15.092
90; 115.38; 90
826.9Tang, Yingying; Peng, Cheng; Guo, Wenbin; Wang, Jun-Feng; Su, Gang; He, Zhangzhen
The Octa-Kagomé Lattice Compounds Showing Quantum Critical Behaviors: Spin Gap Ground State versus Antiferromagnetic Ordering.
Journal of the American Chemical Society, 2017
4126511 CIFBi Cu2 O10 S SeP 1 21/c 19.467; 6.3083; 14.775
90; 115.242; 90
798.1Tang, Yingying; Peng, Cheng; Guo, Wenbin; Wang, Jun-Feng; Su, Gang; He, Zhangzhen
The Octa-Kagomé Lattice Compounds Showing Quantum Critical Behaviors: Spin Gap Ground State versus Antiferromagnetic Ordering.
Journal of the American Chemical Society, 2017
4110814 CIFBi Cu2 O6 P0.32 V0.68P n m a11.884; 5.237; 7.808
90; 90; 90
485.9Olivier Mentré; El Mostafa Ketatni; Marie Colmont; Marielle Huvé; Francis Abraham; Vaclav Petricek
Structural Features of the Modulated BiCu2(P1-xVx)O6 Solid Solution; 4-D Treatment of x=0.87 Compound and Magnetic Spin-Gap to Gapless Transition in New Cu2+ Two-Leg Ladder Systems
Journal of the American Chemical Society, 2006, 128, 10857-10867
4110815 CIFBi Cu2 O6 P0.4 V0.6P n m a11.9736; 5.28702; 7.80964
90; 90; 90
494.387Olivier Mentré; El Mostafa Ketatni; Marie Colmont; Marielle Huvé; Francis Abraham; Vaclav Petricek
Structural Features of the Modulated BiCu2(P1-xVx)O6 Solid Solution; 4-D Treatment of x=0.87 Compound and Magnetic Spin-Gap to Gapless Transition in New Cu2+ Two-Leg Ladder Systems
Journal of the American Chemical Society, 2006, 128, 10857-10867
4106584 CIFBi I O4P c a 215.6584; 11.0386; 5.7476
90; 90; 90
359Sau Doan Nguyen; Jeongho Yeon; Sang-Hwan Kim; P. Shiv Halasyamani
BiO(IO3): A New Polar Iodate that Exhibits an Aurivillius-Type (Bi2O2)2+ Layer and a Large SHG Response
Journal of the American Chemical Society, 2011, 133, 12422-12425
4123920 CIFBi K P2 Se6P 1 21 16.9183; 7.663; 10.239
90; 91.508; 90
542.632Breshears, J.D.; Kanatzidis, M.G.
beta-(K M P2 Se6) (M = Sb, Bi): kinetically accessible phases obtained from rapid crystallisation of amorphous precursors
Journal of the American Chemical Society, 2000, 122, 7839-7840
4123993 CIFBi O3 ScC 1 2 19.8906; 5.8222; 10.0467
90; 108.303; 90
549.271Belik, A.A.; Shamoto, S.; Kodama, K.; Igawa, N.; Iikubo, S.; Takayama-Muromachi, E.; Maie, M.; Matsui, Y.; Stefanovich, S.Yu.; Nagai, T.; Lazoryak, B.I.
Bi Sc O3: Centrosymmetric Bi Mn O3-type oxide
Journal of the American Chemical Society, 2006, 128, 706-707
4117463 CIF
HKL
Bi0.04 Na0.14 O2 SiF d -3 m :224.60237; 24.60237; 24.60237
90; 90; 90
14891.2Hong-Tao Sun; Yoshitaka Matsushita; Yoshio Sakka; Naoto Shirahata; Masahiko Tanaka; Yoshio Katsuya; Hong Gao; Keisuke Kobayashi
Synchrotron X-ray, Photoluminescence, and Quantum Chemistry Studies of Bismuth-Embedded Dehydrated Zeolite Y
Journal of the American Chemical Society, 2012, 134, 2918-2921
4133771 CIFBi1.07 Co3.5 K3.44 Li0.67 O131.08 P5 W30C m m a21.6852; 79.711; 26.2481
90; 90; 90
45371Chen, Linfeng; San, Khin A.; Turo, Michael J.; Gembicky, Milan; Fereidouni, Shelir; Kalaj, Mark; Schimpf, Alina M.
Tunable Metal Oxide Frameworks via Coordination Assembly of Preyssler-Type Molecular Clusters.
Journal of the American Chemical Society, 2019
4116198 CIFBi2 Cs3C 1 2/c 110.078; 10.3207; 10.145
90; 105.21; 90
1018.24Franck Gascoin; Slavi C. Sevov
Synthesis and Characterization of A3Bi2 (A = K, Rb, Cs) with Isolated Diatomic Dianion of Bismuth, [Bi2]2-, and an Extra Delocalized Electron
Journal of the American Chemical Society, 2000, 122, 10251-10252
4116776 CIFBi2 H102 Mn2 N4 Na6 O113 W20P 1 21/n 112.85; 25.1; 16.02
90; 95.08; 90
5146.7Michael Bösing; Andreas Nöh; Ina Loose; Bernt Krebs
Highly Efficient Catalysts in Directed Oxygen-Transfer Processes: Synthesis, Structures of Novel Manganese-Containing Heteropolyanions, and Applications in Regioselective Epoxidation of Dienes with Hydrogen Peroxide
Journal of the American Chemical Society, 1998, 120, 7252-7259
4118540 CIFBi2 Mn Se4C 1 2/m 113.319; 4.0703; 15.179
90; 115.49; 90
742.8Kulugammana G. S. Ranmohotti; Honore Djieutedjeu; Pierre F. P. Poudeu
Chemical Manipulation of Magnetic Ordering in Mn1-xSnxBi2Se4 Solid-Solutions
Journal of the American Chemical Society, 2012, 134, 14033-14042
4135458 CIFBi2 MoI 4/m c m6.4155; 6.4155; 5.488
90; 90; 90
225.88Altman, Alison B.; Tamerius, Alexandra D.; Koocher, Nathan Z.; Meng, Yue; Pickard, Chris J.; Walsh, James P. S.; Rondinelli, James M.; Jacobsen, Steven D.; Freedman, Danna E.
Computationally Directed Discovery of MoBi2
Journal of the American Chemical Society, 2020
4126030 CIFBi2.17 Cd1.83 K1.83 S6C m c m3.9986; 6.92; 23.184
90; 90; 90
641.5Zhao, Jing; Islam, Saiful M.; Kontsevoi, Oleg Y.; Tan, Gangjian; Stoumpos, Constantinos C.; Chen, Haijie; Li, Rukang; Kanatzidis, Mercouri G.
The Two-Dimensional AxCdxBi4-xQ6 (A = K, Rb, Cs; Q = S, Se): Direct Bandgap Semiconductors and Ion-Exchange Materials.
Journal of the American Chemical Society, 2017
4126031 CIFBi2.46 Cd1.54 Rb1.53 S6C m c m3.9968; 6.9243; 23.7
90; 90; 90
655.9Zhao, Jing; Islam, Saiful M.; Kontsevoi, Oleg Y.; Tan, Gangjian; Stoumpos, Constantinos C.; Chen, Haijie; Li, Rukang; Kanatzidis, Mercouri G.
The Two-Dimensional AxCdxBi4-xQ6 (A = K, Rb, Cs; Q = S, Se): Direct Bandgap Semiconductors and Ion-Exchange Materials.
Journal of the American Chemical Society, 2017
4127955 CIFBi2.72 Cs1.03 Mn1.28 S6P 63/m m c3.9548; 3.9548; 24.0993
90; 90; 120
326.43Wang, Ruiqi; Chen, Haijie; Xiao, Yi; Hadar, Ido; Bu, Kejun; Zhang, Xian; Pan, Jie; Gu, Yuhao; Guo, Zhongnan; Huang, Fuqiang; Kanatzidis, Mercouri G.
K<sub> <i>x</i> </sub>[Bi<sub>4-<i>x</i></sub>Mn<sub> <i>x</i> </sub>S<sub>6</sub>], Design of a Highly Selective Ion Exchange Material and Direct Gap 2D Semiconductor.
Journal of the American Chemical Society, 2019, 141, 16903-16914
4127957 CIFBi2.72 K1.28 Mn1.28 S6P 63/m m c3.9521; 3.9521; 23.0937
90; 90; 120
312.38Wang, Ruiqi; Chen, Haijie; Xiao, Yi; Hadar, Ido; Bu, Kejun; Zhang, Xian; Pan, Jie; Gu, Yuhao; Guo, Zhongnan; Huang, Fuqiang; Kanatzidis, Mercouri G.
K<sub> <i>x</i> </sub>[Bi<sub>4-<i>x</i></sub>Mn<sub> <i>x</i> </sub>S<sub>6</sub>], Design of a Highly Selective Ion Exchange Material and Direct Gap 2D Semiconductor.
Journal of the American Chemical Society, 2019, 141, 16903-16914
4127956 CIFBi2.72 Mn1.28 Rb0.88 S6P 63/m m c3.95293; 3.95293; 23.5976
90; 90; 120
319.33Wang, Ruiqi; Chen, Haijie; Xiao, Yi; Hadar, Ido; Bu, Kejun; Zhang, Xian; Pan, Jie; Gu, Yuhao; Guo, Zhongnan; Huang, Fuqiang; Kanatzidis, Mercouri G.
K<sub> <i>x</i> </sub>[Bi<sub>4-<i>x</i></sub>Mn<sub> <i>x</i> </sub>S<sub>6</sub>], Design of a Highly Selective Ion Exchange Material and Direct Gap 2D Semiconductor.
Journal of the American Chemical Society, 2019, 141, 16903-16914
4127958 CIFBi2.72 Mn1.28 S6 Zn0.64P 63/m m c3.94702; 3.94702; 23.4271
90; 90; 120
316.07Wang, Ruiqi; Chen, Haijie; Xiao, Yi; Hadar, Ido; Bu, Kejun; Zhang, Xian; Pan, Jie; Gu, Yuhao; Guo, Zhongnan; Huang, Fuqiang; Kanatzidis, Mercouri G.
K<sub> <i>x</i> </sub>[Bi<sub>4-<i>x</i></sub>Mn<sub> <i>x</i> </sub>S<sub>6</sub>], Design of a Highly Selective Ion Exchange Material and Direct Gap 2D Semiconductor.
Journal of the American Chemical Society, 2019, 141, 16903-16914
4103008 CIFBi3 Mn3 O10.5P n -3 :29.11919; 9.11919; 9.11919
90; 90; 90
758.348Alexei A. Belik; Eiji Takayama-Muromachi
Effects of Oxygen Content on Bi3Mn3O11+δ: From 45 K Antiferromagnetism to Room-Temperature True Ferromagnetism
Journal of the American Chemical Society, 2010, 132, 12426-12432
4103009 CIFBi3 Mn3 O11.6P n -3 :29.11151; 9.11151; 9.11151
90; 90; 90
756.434Alexei A. Belik; Eiji Takayama-Muromachi
Effects of Oxygen Content on Bi3Mn3O11+δ: From 45 K Antiferromagnetism to Room-Temperature True Ferromagnetism
Journal of the American Chemical Society, 2010, 132, 12426-12432
4119563 CIFBi3 O2 S3I 4/m m m3.967213; 3.967213; 41.2847
90; 90; 90
649.771W. Adam Phelan; David C. Wallace; Kathryn E. Arpino; James R. Neilson; Kenneth J. Livi; Che R. Seabourne; Andrew J. Scott; Tyrel M. McQueen
Stacking Variants and Superconductivity in the Bi-O-S System
Journal of the American Chemical Society, 2013, 135, 5372-5374
4114683 CIFBi3.09 Cs0.91 Pb1.91 Te7C m c m4.3456; 32.476; 12.5075
90; 90; 90
1765.2Kuei-Fang Hsu; Duck-Young Chung; Sangeeta Lal; Antje Mrotzek; Theodora Kyratsi; Tim Hogan; Mercouri G. Kanatzidis
CsMBi3Te6 and CsM2Bi3Te7 (M = Pb, Sn): New Thermoelectric Compounds with Low-Dimensional Structures
Journal of the American Chemical Society, 2002, 124, 2410-2411
4114685 CIFBi3.12 Cs0.88 Sn1.88 Te7C m c m4.3881; 33.139; 12.6075
90; 90; 90
1833.3Kuei-Fang Hsu; Duck-Young Chung; Sangeeta Lal; Antje Mrotzek; Theodora Kyratsi; Tim Hogan; Mercouri G. Kanatzidis
CsMBi3Te6 and CsM2Bi3Te7 (M = Pb, Sn): New Thermoelectric Compounds with Low-Dimensional Structures
Journal of the American Chemical Society, 2002, 124, 2410-2411
4114682 CIFBi3.15 Cs0.85 Pb0.85 Te6C m c m6.3322; 28.667; 4.3637
90; 90; 90
792.12Kuei-Fang Hsu; Duck-Young Chung; Sangeeta Lal; Antje Mrotzek; Theodora Kyratsi; Tim Hogan; Mercouri G. Kanatzidis
CsMBi3Te6 and CsM2Bi3Te7 (M = Pb, Sn): New Thermoelectric Compounds with Low-Dimensional Structures
Journal of the American Chemical Society, 2002, 124, 2410-2411
4114684 CIFBi3.16 Cs0.84 Sn0.84 Te6C m c m6.2613; 28.479; 4.3207
90; 90; 90
770.45Kuei-Fang Hsu; Duck-Young Chung; Sangeeta Lal; Antje Mrotzek; Theodora Kyratsi; Tim Hogan; Mercouri G. Kanatzidis
CsMBi3Te6 and CsM2Bi3Te7 (M = Pb, Sn): New Thermoelectric Compounds with Low-Dimensional Structures
Journal of the American Chemical Society, 2002, 124, 2410-2411
4112588 CIFBi4 Cs Te6C 1 2/m 151.9205; 4.4025; 14.5118
90; 101.48; 90
3250.75Duck-Young Chung; Tim P. Hogan; Melissa Rocci-Lane; Paul Brazis; John R. Ireland; Carl R. Kannewurf; Marina Bastea; Ctirad Uher; Mercouri G. Kanatzidis
A New Thermoelectric Material: CsBi4Te6
Journal of the American Chemical Society, 2004, 126, 6414-6428
4123274 CIFBi4 Fe2 Se8C 1 2/m 113.372; 4.1277; 15.072
90; 115.046; 90
753.68Ranmohotti, Kulugammana G. S.; Djieutedjeu, Honore; Lopez, Juan; Page, Alexander; Haldolaarachchige, Neel; Chi, Hang; Sahoo, Pranati; Uher, Ctirad; Young, David; Poudeu, Pierre F. P.
Coexistence of High-Tc Ferromagnetism and n-Type Electrical Conductivity in FeBi2Se4.
Journal of the American Chemical Society, 2015, 137, 691-698
4123275 CIFBi4 Fe2 Se8C 1 2/m 113.2972; 4.1037; 15.038
90; 114.931; 90
744.12Ranmohotti, Kulugammana G. S.; Djieutedjeu, Honore; Lopez, Juan; Page, Alexander; Haldolaarachchige, Neel; Chi, Hang; Sahoo, Pranati; Uher, Ctirad; Young, David; Poudeu, Pierre F. P.
Coexistence of High-Tc Ferromagnetism and n-Type Electrical Conductivity in FeBi2Se4.
Journal of the American Chemical Society, 2015, 137, 691-698
4123276 CIFBi4 Fe2 Se8C 1 2/m 113.3533; 4.1171; 15.0687
90; 115.037; 90
750.59Ranmohotti, Kulugammana G. S.; Djieutedjeu, Honore; Lopez, Juan; Page, Alexander; Haldolaarachchige, Neel; Chi, Hang; Sahoo, Pranati; Uher, Ctirad; Young, David; Poudeu, Pierre F. P.
Coexistence of High-Tc Ferromagnetism and n-Type Electrical Conductivity in FeBi2Se4.
Journal of the American Chemical Society, 2015, 137, 691-698
4118541 CIFBi4 Mn2 Se8C 1 2/m 113.384; 4.0925; 15.224
90; 115.54; 90
752.4Kulugammana G. S. Ranmohotti; Honore Djieutedjeu; Pierre F. P. Poudeu
Chemical Manipulation of Magnetic Ordering in Mn1-xSnxBi2Se4 Solid-Solutions
Journal of the American Chemical Society, 2012, 134, 14033-14042
4100269 CIFBi4 Mn2.7 Ni1.3 O12P n 21 m5.4939; 11.115; 15.503
90; 90; 90
946.7Journal of the American Chemical Society, 2005
4126032 CIFBi5.74 Cd2.26 Cs2.27 Se12C m c m4.1363; 7.1476; 25.047
90; 90; 90
740.5Zhao, Jing; Islam, Saiful M.; Kontsevoi, Oleg Y.; Tan, Gangjian; Stoumpos, Constantinos C.; Chen, Haijie; Li, Rukang; Kanatzidis, Mercouri G.
The Two-Dimensional AxCdxBi4-xQ6 (A = K, Rb, Cs; Q = S, Se): Direct Bandgap Semiconductors and Ion-Exchange Materials.
Journal of the American Chemical Society, 2017
4126648 CIFBi8 Cl0.64 Cu3.46 O8 Se5.36I 4/m m m3.8979; 3.8979; 29.8291
90; 90; 90
453.21Gibson, Quinn D.; Dyer, Matthew S.; Whitehead, George F. S.; Alaria, Jonathan; Pitcher, Michael J.; Edwards, Holly J.; Claridge, John B.; Zanella, Marco; Dawson, Karl; Manning, Troy D.; Dhanak, Vin R.; Rosseinsky, Matthew J.
Bi4O4Cu1.7Se2.7Cl0.3: Intergrowth of BiOCuSe and Bi2O2Se Stabilized by the Addition of a Third Anion.
Journal of the American Chemical Society, 2017
4115838 CIFBi8 I Ni8 SP 49.774; 9.774; 4.197
90; 90; 90
400.94Alexey I. Baranov; Lars A. Kloo; Andrei V. Olenev; Boris A. Popovkin; Anatolii I. Romanenko; Andrei V. Shevelkov
Unique Metallic Wires in a Novel Quasi-1D Compound. Synthesis, Crystal and Electronic Structure, and Properties of Ni8Bi8SI
Journal of the American Chemical Society, 2001, 123, 12375-12379
4118542 CIFBi8 Mn Se16 Sn3C 1 2/m 113.493; 4.126; 15.322
90; 115.52; 90
769.8Kulugammana G. S. Ranmohotti; Honore Djieutedjeu; Pierre F. P. Poudeu
Chemical Manipulation of Magnetic Ordering in Mn1-xSnxBi2Se4 Solid-Solutions
Journal of the American Chemical Society, 2012, 134, 14033-14042
4109760 CIFBi9 Ca9 Cd4.06P b a m22.499; 12.7079; 4.7229
90; 90; 90
1350.3Sheng-qing Xia; Svilen Bobev
Interplay between Size and Electronic Effects in Determining the Homogeneity Range of the A9Zn4+xPn9 and A9Cd4+xPn9 Phases (0 <=x<= 0.5), A = Ca, Sr, Yb, Eu; Pn = Sb, Bi
Journal of the American Chemical Society, 2007, 129, 10011-10018
4109765 CIFBi9 Ca9 Zn4.09P b a m22.0688; 12.5898; 4.6336
90; 90; 90
1287.41Sheng-qing Xia; Svilen Bobev
Interplay between Size and Electronic Effects in Determining the Homogeneity Range of the A9Zn4+xPn9 and A9Cd4+xPn9 Phases (0 <=x<= 0.5), A = Ca, Sr, Yb, Eu; Pn = Sb, Bi
Journal of the American Chemical Society, 2007, 129, 10011-10018
4109761 CIFBi9 Cd4 Yb9P b a m22.426; 12.629; 4.72
90; 90; 90
1336.8Sheng-qing Xia; Svilen Bobev
Interplay between Size and Electronic Effects in Determining the Homogeneity Range of the A9Zn4+xPn9 and A9Cd4+xPn9 Phases (0 <=x<= 0.5), A = Ca, Sr, Yb, Eu; Pn = Sb, Bi
Journal of the American Chemical Society, 2007, 129, 10011-10018
4109763 CIFBi9 Cd4.21 Eu9P b a m23.1615; 13.0114; 4.8588
90; 90; 90
1464.27Sheng-qing Xia; Svilen Bobev
Interplay between Size and Electronic Effects in Determining the Homogeneity Range of the A9Zn4+xPn9 and A9Cd4+xPn9 Phases (0 <=x<= 0.5), A = Ca, Sr, Yb, Eu; Pn = Sb, Bi
Journal of the American Chemical Society, 2007, 129, 10011-10018
4109762 CIFBi9 Cd4.27 Sr9P b a m23.402; 13.186; 4.8906
90; 90; 90
1509.1Sheng-qing Xia; Svilen Bobev
Interplay between Size and Electronic Effects in Determining the Homogeneity Range of the A9Zn4+xPn9 and A9Cd4+xPn9 Phases (0 <=x<= 0.5), A = Ca, Sr, Yb, Eu; Pn = Sb, Bi
Journal of the American Chemical Society, 2007, 129, 10011-10018
4115854 CIFBi9 Yb9 Zn4P b a m12.5705; 22.028; 4.6401
90; 90; 90
1284.9Sung-Jin Kim; Jim Salvador; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
Yb9Zn4Bi9: Extension of the Zintl Concept to the Mixed-Valent Spectator Cations
Journal of the American Chemical Society, 2001, 123, 12704-12705
4109764 CIFBi9 Yb9 Zn4.03P b a m21.997; 12.5243; 4.6283
90; 90; 90
1275.1Sheng-qing Xia; Svilen Bobev
Interplay between Size and Electronic Effects in Determining the Homogeneity Range of the A9Zn4+xPn9 and A9Cd4+xPn9 Phases (0 <=x<= 0.5), A = Ca, Sr, Yb, Eu; Pn = Sb, Bi
Journal of the American Chemical Society, 2007, 129, 10011-10018
4126399 CIFBk I4 O12P 4/n8.5604; 8.5604; 7.5746
90; 90; 90
555.07Silver, Mark A.; Cary, Samantha K.; Garza, Alejandro J.; Baumbach, Ryan E.; Arico, Alexandra A.; Galmin, Gregory A.; Chen, Kuan-Wen; Johnson, Jason A.; Wang, Jamie C.; Clark, Ronald J.; Chemey, Alexander; Eaton, Teresa M.; Marsh, Matthew L.; Seidler, Kevin; Galley, Shane S.; van de Burgt, Lambertus; Gray, Ashley L.; Hobart, David E.; Hanson, Kenneth; van Cleve, Shelley M.; Gendron, Frédéric; Autschbach, Jochen; Scuseria, Gustavo E.; Maron, Laurent; Speldrich, Manfred; Kögerler, Paul; Celis-Barros, Cristian; Paéz-Hernandéz, Dayán; Arratia-Perez, Ramiro; Ruf, Michael; Albrecht-Schmitt, Thomas E
Departure from a Spherically Symmetric Ground State in a System with a Half-filled Shell: The Case Example of Berkelium(IV) Iodate.
Journal of the American Chemical Society, 2017
4126398 CIFBk2 I6 O18P 1 21/n 18.7475; 5.9029; 15.0832
90; 96.8723; 90
773.23Silver, Mark A.; Cary, Samantha K.; Garza, Alejandro J.; Baumbach, Ryan E.; Arico, Alexandra A.; Galmin, Gregory A.; Chen, Kuan-Wen; Johnson, Jason A.; Wang, Jamie C.; Clark, Ronald J.; Chemey, Alexander; Eaton, Teresa M.; Marsh, Matthew L.; Seidler, Kevin; Galley, Shane S.; van de Burgt, Lambertus; Gray, Ashley L.; Hobart, David E.; Hanson, Kenneth; van Cleve, Shelley M.; Gendron, Frédéric; Autschbach, Jochen; Scuseria, Gustavo E.; Maron, Laurent; Speldrich, Manfred; Kögerler, Paul; Celis-Barros, Cristian; Paéz-Hernandéz, Dayán; Arratia-Perez, Ramiro; Ruf, Michael; Albrecht-Schmitt, Thomas E
Departure from a Spherically Symmetric Ground State in a System with a Half-filled Shell: The Case Example of Berkelium(IV) Iodate.
Journal of the American Chemical Society, 2017
1010096 CIFBrC m c a16.67; 4.48; 8.72
90; 90; 90
651.2Vonnegut, B; Warren, B E
The Structure of Crystalline Bromine
Journal of the American Chemical Society, 1936, 58, 2459-2461

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