Crystallography Open Database

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1537179 CIFAl2 Ca2 Cr0.026 O7 Si0.974P -4 21 m7.6877; 7.6877; 5.0659
90; 90; 90
299.398Kuz'micheva, G.M.; Zharikov, E.V.; Denisov, A.L.
X-ray structural study of synthetic gehlenites Ca2 Al (Al Si) O7 and akermanites Ca2 Mg Si2 O7, doped with chromium ions
Zhurnal Neorganicheskoi Khimii, 1995, 40, 1422-1428
1537182 CIFAl1.5 B0.5 Ca2 Cr0.5 O7 Si0.5P -4 21 m7.69; 7.69; 5.0714
90; 90; 90
299.903Kuz'micheva, G.M.; Zharikov, E.V.; Denisov, A.L.
X-ray structural study of synthetic gehlenites Ca2 Al (Al Si) O7 and akermanites Ca2 Mg Si2 O7, doped with chromium ions
Zhurnal Neorganicheskoi Khimii, 1995, 40, 1422-1428
1537186 CIFCa2 Cr0.02 Mg O7 Si1.98P -4 21 m7.835; 7.835; 5.008
90; 90; 90
307.427Kuz'micheva, G.M.; Zharikov, E.V.; Denisov, A.L.
X-ray structural study of synthetic gehlenites Ca2 Al (Al Si) O7 and akermanites Ca2 Mg Si2 O7, doped with chromium ions
Zhurnal Neorganicheskoi Khimii, 1995, 40, 1422-1428
1537220 CIFAl1.25 Ca1.94 O7 Si1.38 Zn0.43P -4 21 m7.734; 7.734; 5.048
90; 90; 90
301.945Rozhdestvenskaya, I.V.; Bannova, I.I.; Timoshenko, T.I.; Barbanyagre, V.D.; Shamshurov, V.M.
Refinement of the Ca2 (Al,Zn)(Si,Al)2 O7 crystal structure. Isomorphism in the structures of the helenite-hardystonite series
Kristallografiya, 1995, 40, 681-683
1537544 CIFCa2 Ga2 O7 SiP -4 21 m7.797; 7.797; 5.132
90; 90; 90
311.991Korczak, P.; Raaz, F.
Verfeinerung der Kristallstruktur von Gehlenit unter Zugrundelegung des Gallium-Gehlenites.
Anzeiger der Oesterreichischen Akademie der Wissenschaften, Mathematisch-Naturwissenschaftliche Klasse, 1967, 104, 383-388
1539086 CIFTaP -4 21 m10.184; 10.184; 5.306
90; 90; 90
550.306Shamrai, V.F.; Warhulska, A.V.; Arakcheeva, A.V.; Grinevich, V.V.
Magnetic properties and crystal structure of Ta beta
Kristallografiya, 2004, 49, 1025-1030
1539516 CIFLi6 O7 Si2P -4 21 m7.715; 7.715; 4.88
90; 90; 90
290.464Voellenkle, H.; Wittmann, A.; Nowotny, H.
Die Kristallstruktur der Verbindung Li6 (Si2 O7)
Monatshefte fuer Chemie (-108,1977), 1969, 100, 295-303
1540252 CIFAl2 Ca2 O7 SiP -4 21 m7.736; 7.736; 5.123
90; 90; 90
306.59Kimata, M.; Saito, S.; Shimizu, M.
Refinement of the high-temperature crystal structure of gehlenite using a new radiative air-cooled heater
Transactions of the American Crystallographic Association, 1991, 27, 301-308
1540960 CIFAl5 H15.84 Li5.04 O27.92 Si5P -4 21 m9.911; 9.911; 6.56
90; 90; 90
644.375Shepelev, Yu.F.; Butikova, I.K.; Smolin, Yu.I.
Crystal structure of the synthetic zeolite Li F
Kristallografiya, 1989, 34, 1302-1304
1541863 CIFAl3.9 Ba1.952 H14.8 O27.4 Si6.1P -4 21 m9.581; 9.581; 6.526
90; 90; 90
599.058Mazzi, F.; Gottardi, G.; Galli, E.
Crystal structure refinement of two tetragonal edingtonites
Neues Jahrbuch fuer Mineralogie. Monatshefte (Band=Jahr) (1950-), 1984, 1984, 373-382
1542128 CIFMn1.02 O7 Si2.056 Sr1.928P -4 21 m8.118; 8.118; 5.142
90; 90; 90
338.868Kimata, M.
The structural properties and mineralogical significance of synthetic Sr2 Mn Si2 O7 melilite with 4-coordinated manganese
Neues Jahrbuch fuer Mineralogie. Monatshefte (Band=Jahr) (1950-), 1985, 1985, 83-96
1544223 CIFC H4 N2 OP -4 21 m5.589; 5.589; 4.68
90; 90; 90
146.2Olejniczak, Anna; Ostrowska, Kinga; Katrusiak, Andrzej
H-Bond Breaking in High-Pressure Urea
The Journal of Physical Chemistry C, 2009, 113, 15761
1544846 CIFCa1.53 Fe0.49 Mg0.52 Na0.47 O7 Si1.99P -4 21 m7.8228; 7.8228; 5.0271
90; 90; 90
307.639Akasaka, M.; Nagashima, M.; Makino, K.; Ohashi, H.
Distribution of Fe3+ in a synthetic (Ca,Na)2(Mg,Fe3+)Si2O7-melilite: 57Fe Mossbauer and X-ray Rietveld studies
Journal of Mineralogical and Petrological Sciences, 2005, 100, 229-236
1560257 CIFC16 H40 Cl0.15 I3.85 N2 ZnP -4 21 m13.6341; 13.6341; 14.6643
90; 90; 90
2725.9Najla Mahbouli Rhouma; Ali Rayes; Francesco Mezzadri; Davide Delmonte; Riccardi Cabassi; Gianluca Calestani; Mohamed Loukil
Structural and electrical phase transitions in the [(C2H5)4N]2ZnI3.86Cl0.14 system
Journal of Solid State Chemistry, 2017, 256, 60-66
1560258 CIFC16 H40 Cl0.12 I3.88 N2 ZnP -4 21 m13.7327; 13.7327; 14.7484
90; 90; 90
2781.4Najla Mahbouli Rhouma; Ali Rayes; Francesco Mezzadri; Davide Delmonte; Riccardi Cabassi; Gianluca Calestani; Mohamed Loukil
Structural and electrical phase transitions in the [(C2H5)4N]2ZnI3.86Cl0.14 system
Journal of Solid State Chemistry, 2017, 256, 60-66
1560259 CIFC16 H40 Cl0.18 I3.82 N2 ZnP -4 21 m13.7471; 13.7471; 14.7993
90; 90; 90
2796.8Najla Mahbouli Rhouma; Ali Rayes; Francesco Mezzadri; Davide Delmonte; Riccardi Cabassi; Gianluca Calestani; Mohamed Loukil
Structural and electrical phase transitions in the [(C2H5)4N]2ZnI3.86Cl0.14 system
Journal of Solid State Chemistry, 2017, 256, 60-66
1560260 CIFC16 H40 Cl0.12 I3.88 N2 ZnP -4 21 m13.865; 13.865; 14.833
90; 90; 90
2851.5Najla Mahbouli Rhouma; Ali Rayes; Francesco Mezzadri; Davide Delmonte; Riccardi Cabassi; Gianluca Calestani; Mohamed Loukil
Structural and electrical phase transitions in the [(C2H5)4N]2ZnI3.86Cl0.14 system
Journal of Solid State Chemistry, 2017, 256, 60-66
1560588 CIFCs2 O16 S1.83 Se1.17 U2P -4 21 m9.6926; 9.6926; 8.1354
90; 90; 90
764.29Gurzhiy, Vladislav V.; Tyumentseva, Olga S.; Krivovichev, Sergey V.; Tananaev, Ivan G.
Selective Se-for-S substitution in Cs-bearing uranyl compounds
Journal of Solid State Chemistry, 2017, 248, 126-133
1560589 CIFCs2 O16 S1.51 Se1.49 U2P -4 21 m9.7075; 9.7075; 8.1407
90; 90; 90
767.1Gurzhiy, Vladislav V.; Tyumentseva, Olga S.; Krivovichev, Sergey V.; Tananaev, Ivan G.
Selective Se-for-S substitution in Cs-bearing uranyl compounds
Journal of Solid State Chemistry, 2017, 248, 126-133
1560590 CIFCs2 O16 S0.96 Se2.05 U2P -4 21 m9.7828; 9.7828; 8.1537
90; 90; 90
780.3Gurzhiy, Vladislav V.; Tyumentseva, Olga S.; Krivovichev, Sergey V.; Tananaev, Ivan G.
Selective Se-for-S substitution in Cs-bearing uranyl compounds
Journal of Solid State Chemistry, 2017, 248, 126-133
1560591 CIFCs2 O16 S0.49 Se2.52 U2P -4 21 m9.8082; 9.8082; 8.1477
90; 90; 90
783.8Gurzhiy, Vladislav V.; Tyumentseva, Olga S.; Krivovichev, Sergey V.; Tananaev, Ivan G.
Selective Se-for-S substitution in Cs-bearing uranyl compounds
Journal of Solid State Chemistry, 2017, 248, 126-133
1560592 CIFCs2 O16 Se3 U2P -4 21 m9.856; 9.856; 8.1587
90; 90; 90
792.5Gurzhiy, Vladislav V.; Tyumentseva, Olga S.; Krivovichev, Sergey V.; Tananaev, Ivan G.
Selective Se-for-S substitution in Cs-bearing uranyl compounds
Journal of Solid State Chemistry, 2017, 248, 126-133
1560593 CIFCs2 O16 S3 U2P -4 21 m9.6165; 9.6165; 8.1055
90; 90; 90
749.57Gurzhiy, Vladislav V.; Tyumentseva, Olga S.; Krivovichev, Sergey V.; Tananaev, Ivan G.
Selective Se-for-S substitution in Cs-bearing uranyl compounds
Journal of Solid State Chemistry, 2017, 248, 126-133
1560594 CIFCs2 O16 S2.7 Se0.31 U2P -4 21 m9.6268; 9.6268; 8.1119
90; 90; 90
751.77Gurzhiy, Vladislav V.; Tyumentseva, Olga S.; Krivovichev, Sergey V.; Tananaev, Ivan G.
Selective Se-for-S substitution in Cs-bearing uranyl compounds
Journal of Solid State Chemistry, 2017, 248, 126-133
1560595 CIFCs2 O16 S2.43 Se0.57 U2P -4 21 m9.6518; 9.6518; 8.1163
90; 90; 90
756.09Gurzhiy, Vladislav V.; Tyumentseva, Olga S.; Krivovichev, Sergey V.; Tananaev, Ivan G.
Selective Se-for-S substitution in Cs-bearing uranyl compounds
Journal of Solid State Chemistry, 2017, 248, 126-133
1560596 CIFCs2 O16 S2.14 Se0.86 U2P -4 21 m9.6835; 9.6835; 8.1328
90; 90; 90
762.61Gurzhiy, Vladislav V.; Tyumentseva, Olga S.; Krivovichev, Sergey V.; Tananaev, Ivan G.
Selective Se-for-S substitution in Cs-bearing uranyl compounds
Journal of Solid State Chemistry, 2017, 248, 126-133
1562471 CIFCu K2 O7 P2P -4 21 m8.056; 8.056; 5.46
90; 90; 90
354.35Keates, Adam C.; Wang, Qianlong; Weller, Mark T.
Synthesis and structural characterisation of iron(II) and copper(II) diphosphates containing flattened metal oxotetrahedra
Journal of Solid State Chemistry, 2014, 210, 10-14
1562472 CIFFe K2 O7 P2P -4 21 m8.092; 8.092; 5.496
90; 90; 90
359.9Keates, Adam C.; Wang, Qianlong; Weller, Mark T.
Synthesis and structural characterisation of iron(II) and copper(II) diphosphates containing flattened metal oxotetrahedra
Journal of Solid State Chemistry, 2014, 210, 10-14
1566501 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566502 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566503 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566504 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566505 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566506 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566507 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566508 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566509 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566510 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566511 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566512 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566513 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566514 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566515 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566516 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566517 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566518 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566519 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566520 CIFC H4 N2 OP -4 21 m5.578; 5.578; 4.686
90; 90; 90
145.8Ruth, Paul Niklas; Herbst-Irmer, Regine; Stalke, Dietmar
Hirshfeld atom refinement based on projector augmented wave densities with periodic boundary conditions
IUCrJ, 2022, 9, 286-297
1566786 CIFO S6 Sn2 Sr2 ZnP -4 21 m9.664; 9.664; 6.33
90; 90; 90
591.177Cheng, Yansong; Wu, Hongping; Yu, Hongwei; Hu, Zhanggui; Wang, Jiyang; Wu, Yicheng
Rational Design of a Promising Oxychalcogenide Infrared Nonlinear Optical Crystal
Chemical Science, 2022
1568610 CIFC112 H70 N8 O59 Y8P -4 21 m33.7993; 33.7993; 7.9398
90; 90; 90
9070.4Li, Juan; Wang, Airong; Qiu, Shiming; Wang, Xiaoli; Li, Jiaming
A 12-Connected [Y<sub>4</sub>((<i>μ</i><sub>3</sub>-OH)<sub>4</sub>]<sup>8+</sup> Cluster-Based Luminescent Metal-Organic Framework for Selective Turn-on Detection of F<sup>-</sup> in H<sub>2</sub>O.
Molecules (Basel, Switzerland), 2023, 28, 1893

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