Crystallography Open Database

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7101267 CIFVI m -3 m3.026; 3.026; 3.026
90; 90; 90
27.708Simon Clarke; Oliver J. Rutt; Gareth R. Williams
Reversible lithium insertion and copper extrusion in layered oxysulfides
Chemical Communications, 2006
7101270 CIFVI m -3 m3.02658; 3.02658; 3.02658
90; 90; 90
27.724Simon Clarke; Oliver J. Rutt; Gareth R. Williams
Reversible lithium insertion and copper extrusion in layered oxysulfides
Chemical Communications, 2006
7110559 CIFLi N NiP -6 m 23.758; 3.758; 3.54
90; 90; 120
43.3Barker, Marten G.; Blake, Alexander J.; Gregory, Duncan H.; Siddons, Daniel J.; Smith, Susan E.; Edwards, Peter P.; Hamor, Thomas A.
Novel layered lithium nitridonickelates; effect of Li vacancy concentration on N co-ordination geometry and Ni oxidation state
Chemical Communications, 1999, 1187
7102756 CIFCo0.53 Li1.99 NP 6/m m m3.7343; 3.7343; 3.607
90; 90; 120
43.56Gordon, Alexandra G; Smith, Ronald I; Wilson, Claire; Stoeva, Zlatka; Gregory, Duncan H
Crystal growth, defect structure and magnetism of new Li3N-derived lithium nitridocobaltates.
Chemical communications (Cambridge, England), 2004, 2812-2813
7105364 CIF?P 63 m c3.19868; 3.19868; 5.19278
90; 90; 120
46.0121Yashima, Masatomo; Yamada, Hiroki; Maeda, Kazuhiko; Domen, Kazunari
Experimental visualization of covalent bonds and structural disorder in a gallium zinc oxynitride photocatalyst (Ga(1-x)Zn(x))(N(1-x)O(x)): origin of visible light absorption.
Chemical communications (Cambridge, England), 2010, 46, 2379-2381
7101269 CIFCuF m -3 m3.61447; 3.61447; 3.61447
90; 90; 90
47.221Simon Clarke; Oliver J. Rutt; Gareth R. Williams
Reversible lithium insertion and copper extrusion in layered oxysulfides
Chemical Communications, 2006
7101264 CIFCuF m -3 m3.61696; 3.61696; 3.61696
90; 90; 90
47.318Simon Clarke; Oliver J. Rutt; Gareth R. Williams
Reversible lithium insertion and copper extrusion in layered oxysulfides
Chemical Communications, 2006
7100128 CIFN Na SnP 63 m c3.3306; 3.3306; 10.8919
90; 90; 120
104.636Simon Clarke; Oltan Gal; Nicholas Watney; D. Webster; Simon J. Clarke
The first ternary tin (II) nitride: NaSnN
Chemical Communications, 2005
1008882 CIFNa O3I m 2 m3.507; 5.7703; 5.2701
90; 90; 90
106.6Klein, W; Armbruster, K; Jansen, M
Synthesis and crystal structure determination of sodium ozonide
Chemical Communications, 1998, 1998, 707-708
7103014 CIFO2 SiP 32 2 14.9115; 4.9115; 5.4038
90; 90; 120
112.892Henry, Paul F; Weller, Mark T; Wilson, Chick C
Hydrogenous materials using powder neutron diffraction: full structural determination of adsorbed water molecules in a zeolite.
Chemical communications (Cambridge, England), 2008, 1557-1559
7115847 CIFC4 H2 Li2 O4P -13.3392; 4.9297; 7.4736
76.777; 86.619; 78.68
117.42Hamish H.-M. Yeung; Monica Kosa; John M. Griffin; Clare P. Grey; Dan T. Major; Anthony K. Cheetham
Topotactic elimination of water across a C-C ligand bond in a dense 3-D metal-organic framework
Chem.Commun., 2014, 50, 13292
7120700 CIFBi NiC m c m3.3873; 9.4079; 3.7587
90; 90; 90
119.78Powderly, Kelly M.; Clarke, Samantha M.; Amsler, Maximilian; Wolverton, Chris M.; Malliakas, Christos D.; Meng, Yue; Jacobsen, Steven D.; Freedman, Danna
High-pressure discovery of β-NiBi
Chem. Commun., 2017
7116665 CIFFe1.172 H Li0.828 O SP 4/n m m :13.7038; 3.7038; 8.8852
90; 90; 90
121.888U. Pachmayr; D. Johrendt
[(Li0.8Fe0.2)OH]FeS and the ferromagnetic superconductors [(Li0.8Fe0.2)OH]Fe(S1-xSex) (0 < x ? 1)
Chem.Commun., 2015, 51, 4689
7117021 CIFGd H3 O3P 63/m6.2993; 6.2993; 3.6057
90; 90; 120
123.91Yan Yang; Qian-Chong Zhang; Yin-Yin Pan; La-Sheng Long; Lan-Sun Zheng
Magnetocaloric effect and thermal conductivity of Gd(OH)3 and Gd2O(OH)4(H2O)2
Chem.Commun., 2015, 51, 7317
7129253 CIFCu Fe O SP 4/n m m :23.8219; 3.8219; 8.645
90; 90; 90
126.28Du, Wei; zhang, ganghua; Chen, Ping; Tang, Pingying; Wang, Jing; Li, Dezeng; Hou, Jingshan; Fang, Yongzheng
Visible-light photoelectric response in semiconducting quaternary oxysulfide FeOCuS with anti-PbO-type structure
Chemical Communications, 2021
7110560 CIFLi5 N3 Ni3P -6 2 m6.475; 6.475; 3.555
90; 90; 120
129.08Barker, Marten G.; Blake, Alexander J.; Gregory, Duncan H.; Siddons, Daniel J.; Smith, Susan E.; Edwards, Peter P.; Hamor, Thomas A.
Novel layered lithium nitridonickelates; effect of Li vacancy concentration on N co-ordination geometry and Ni oxidation state
Chemical Communications, 1999, 1187
7101266 CIFO SrF m -3 m5.1326; 5.1326; 5.1326
90; 90; 90
135.21Simon Clarke; Oliver J. Rutt; Gareth R. Williams
Reversible lithium insertion and copper extrusion in layered oxysulfides
Chemical Communications, 2006
7102430 CIFO SrF m -3 m5.1432; 5.1432; 5.1432
90; 90; 90
136.05Hayward, M A
Selective deintercalation of apex over face-shared oxide ions in the topotactic reduction of Sr7Mn4O15 to Sr7Mn4O12.
Chemical communications (Cambridge, England), 2004, 170-171
7103589 CIFD0.09 O2 TiI 41/a m d :23.78582; 3.78582; 9.50739
90; 90; 90
136.264Chan, Wing K; Borghols, Wouter J H; Mulder, Fokko M
Direct observation of space charge induced hydrogen ion insertion in nanoscale anatase TiO2.
Chemical communications (Cambridge, England), 2008, 6342-6344
7128793 CIFC2 H5 N O2P 1 21 15.0757; 6.1737; 5.3882
90; 113.422; 90
154.931Hoser, Anna A.; Sztylko, Marcin; Trzybiński, Damian; Madsen, Anders Ø
Theoretically derived thermodynamic properties can be improved by the refinement of low-frequency modes against X-ray diffraction data.
Chemical communications (Cambridge, England), 2021, 57, 9370-9373
7129000 CIFCa2 N2 NiI 4/m m m3.57206; 3.57206; 12.19453
90; 90; 90
155.598Kloß, Simon D; Attfield, J. Paul
Low-dimensional magnetism in calcium nitridonickelate(II) Ca<sub>2</sub>NiN<sub>2</sub>.
Chemical communications (Cambridge, England), 2021, 57, 10427-10430
7115973 CIFC4 Cu D8 F2 N2 O2P -14.9115; 5.4216; 6.187
99.8; 105.24; 92.078
156.07A. Lanza; C. Fiolka; M. Fisch; N. Casati; M. Skoulatos; C. Ruegg; K. W. Kramer; Piero Macchi
New magnetic frameworks of [(CuF2(H2O)2)x(pyz)]
Chem.Commun., 2014, 50, 14504
7121699 CIFBa2 H3 N O6P -6 2 m6.9069; 6.9069; 3.8028
90; 90; 120
157.109Dong, Xuehua; Huang, Ling; Liu, Qingyu; Zeng, Hongmei; Lin, Zhien; Xu, Dingguo; Zou, Guohong
Perfect balance harmony in Ba<sub>2</sub>NO<sub>3</sub>(OH)<sub>3</sub>: a beryllium-free nitrate as a UV nonlinear optical material.
Chemical communications (Cambridge, England), 2018, 54, 5792-5795
7132179 CIFC2 H5 N O2P 1 21 15.0947; 6.2681; 5.3883
90; 113.232; 90
158.12Mettler, Marie; Dewandre, Adrien; Tumanov, Nikolay; Wouters, Johan; Septavaux, Jean
Single crystal formation in core-shell capsules.
Chemical communications (Cambridge, England), 2023
7130882 CIFAl Ca Dy O4I 4/m m m3.6501; 3.6501; 11.909
90; 90; 90
158.666Kazin, Pavel E.; Zykin, Mikhail; Dyakonov, Andrey K.; Vasiliev, Alexander V.; Karpov, Maxim A.; Gorbachev, Evgeny A.; Sleptsova, Anastasia E.; Jansen, Martin
Dy3+ single ion magnet in the extended inorganic solid Ca(Y,Dy)AlO4
Chemical Communications, 2022
7103195 CIFAg Br H3 NP 1 21/m 14.1931; 5.873; 6.757
90; 97.553; 90
164.955Chippindale, Ann M; Head, Laura E; Hibble, Simon J
Simple linear asymmetrical complexes of silver(I): NC-Ag-NH3 and Br-Ag-NH3.
Chemical communications (Cambridge, England), 2008, 3010-3012
7105575 CIFAl4.8 O9.6 Si1.2P b a m7.588; 7.688; 2.8895
90; 90; 90
168.56Zhang, Pengyu; Liu, Jiachen; Du, Haiyan; Li, Sha; Xu, Rui
A facile preparation of mullite [Al(2)(Al(2.8)Si(1.2))O(9.6)] nanowires by B(2)O(3)-doped molten salts synthesis.
Chemical communications (Cambridge, England), 2010, 46, 3988-3990
7126022 CIFC2 H5 Na OP -4 21 m4.41084; 4.41084; 9.06779
90; 90; 90
176.418Beske, Maurice; Tapmeyer, Lukas; Schmidt, Martin U.
Crystal structure of sodium ethoxide (C<sub>2</sub>H<sub>5</sub>ONa), unravelled after 180 years.
Chemical communications (Cambridge, England), 2020, 56, 3520-3523
7130954 CIFD3.8 La4 Li2 N1.69 O2.31I 4/m m m3.65603; 3.65603; 13.3557
90; 90; 90
178.52Zapp, Nicolas; Oehler, Florian; Bertmer, Marko; Auer, Henry; Sheptyakov, Denis; Ritter, Clemens; Kohlmann, Holger
Aliovalent anion substitution as a design concept for heteroanionic Ruddlesden–Popper hydrides
Chemical Communications, 2022
7130953 CIFH3.13 La4 Li2 N1.68 O2.32I 4/m m m3.6574; 3.6574; 13.3679
90; 90; 90
178.817Zapp, Nicolas; Oehler, Florian; Bertmer, Marko; Auer, Henry; Sheptyakov, Denis; Ritter, Clemens; Kohlmann, Holger
Aliovalent anion substitution as a design concept for heteroanionic Ruddlesden–Popper hydrides
Chemical Communications, 2022
7132177 CIFCl NaF m -3 m5.6357; 5.6357; 5.6357
90; 90; 90
178.996Mettler, Marie; Dewandre, Adrien; Tumanov, Nikolay; Wouters, Johan; Septavaux, Jean
Single crystal formation in core-shell capsules.
Chemical communications (Cambridge, England), 2023
7101738 CIFGeF d -3 m :25.6455; 5.6455; 5.6455
90; 90; 90
179.93Beekman, Matt; Kaduk, James A; Huang, Qing; Wong-Ng, Winnie; Yang, Zhi; Wang, Dongli; Nolas, George S
Synthesis and crystal structure of Na1-xGe3+z: a novel zeolite-like framework phase in the Na-Ge system.
Chemical communications (Cambridge, England), 2007, 837-839
7101739 CIFGeF d -3 m :25.6575; 5.6575; 5.6575
90; 90; 90
181.08Beekman, Matt; Kaduk, James A; Huang, Qing; Wong-Ng, Winnie; Yang, Zhi; Wang, Dongli; Nolas, George S
Synthesis and crystal structure of Na1-xGe3+z: a novel zeolite-like framework phase in the Na-Ge system.
Chemical communications (Cambridge, England), 2007, 837-839
7111201 CIFC6 H12 N2 O2P -15.1097; 5.5722; 7.0473
69.575; 87.12; 75.465
181.865Seaton, Colin C.; Tremayne, Maryjane
Differential evolution: crystal structure determination of a triclinic polymorph of adipamide from powder diffraction data
Chemical Communications, 2002, 880
7130952 CIFD4.92 La4 Li2 N3.08I 4/m m m3.69312; 3.69312; 13.41285
90; 90; 90
182.94Zapp, Nicolas; Oehler, Florian; Bertmer, Marko; Auer, Henry; Sheptyakov, Denis; Ritter, Clemens; Kohlmann, Holger
Aliovalent anion substitution as a design concept for heteroanionic Ruddlesden–Popper hydrides
Chemical Communications, 2022
7130951 CIFD4.84 La4 Li2 N3.16I 4/m m m3.69326; 3.69326; 13.4133
90; 90; 90
182.96Zapp, Nicolas; Oehler, Florian; Bertmer, Marko; Auer, Henry; Sheptyakov, Denis; Ritter, Clemens; Kohlmann, Holger
Aliovalent anion substitution as a design concept for heteroanionic Ruddlesden–Popper hydrides
Chemical Communications, 2022
7132674 CIFB2 F O4 SbP -14.3436; 6.3169; 7.0009
92.888; 95.126; 104.803
184.44Hu, Chenhui; Wu, Mengfan; Han, Jian; Yang, Zhihua; Han, Shujuan; Pan, Shilie
New antimony fluorooxoborates with strong birefringence and unprecedented structural characterisation.
Chemical communications (Cambridge, England), 2024, 60, 2653-2656
7130003 CIFC2 Cl3 N PbP m -3 m5.761; 5.761; 5.761
90; 90; 90
191.203Petrosova, Hanna R.; Kucheriv, Olesia I.; Shova, Sergiu; Gural'skiy, Il'ya A.
Aziridinium cation templating 3D lead halide hybrid perovskites
Chemical Communications, 2022
7101268 CIFLi3.62 Mn O2 S3 Sr2P 4/m m m4.05416; 4.05416; 11.79624
90; 90; 90
193.885Simon Clarke; Oliver J. Rutt; Gareth R. Williams
Reversible lithium insertion and copper extrusion in layered oxysulfides
Chemical Communications, 2006
7101077 CIFC6 H10 Cl2 N2P -14.285; 5.8053; 8.6259
71.035; 76.868; 79.631
196.3Jonathan Steed; Kirsty Anderson; Andres E. Goeta; Kirsty S. B. Hancock
Unusual variations in the incidence of Z'>1 in oxo-anion structures
Chemical Communications, 2006
7114937 CIFC4 H16 B2 N2P -15.833; 6.029; 6.24
80.372; 81.533; 65.942
196.8Jaska, Cory A.; Temple, Karen; Lough, Alan J.; Manners, Ian
Rhodium-catalyzed formation of boron‒nitrogen bonds: a mild route to cyclic aminoboranes and borazines
Chemical Communications, 2001, 962
7104410 CIFC H3 O3P 1 21/n 15.744; 3.098; 11.63
90; 106.15; 90
198.8Casati, Nicola; Macchi, Piero; Sironi, Angelo
Hydrogen migration in oxalic acid di-hydrate at high pressure?
Chemical communications (Cambridge, England), 2009, 34, 2679-2681
7104686 CIFAs2 Ba0.9 Fe2 Sn0.1I 4/m m m3.9297; 3.9297; 13.158
90; 90; 90
203.2Mathieu, Josiah L; Latturner, Susan E
Zintl phase as dopant source in the flux synthesis of Ba(1-x)K(x)Fe(2)As(2) type superconductors.
Chemical communications (Cambridge, England), 2009, 34, 4965-4967
7104682 CIFAs2 Ba0.5 Fe2 K0.4 Sn0.1I 4/m m m3.9021; 3.9021; 13.3538
90; 90; 90
203.33Mathieu, Josiah L; Latturner, Susan E
Zintl phase as dopant source in the flux synthesis of Ba(1-x)K(x)Fe(2)As(2) type superconductors.
Chemical communications (Cambridge, England), 2009, 34, 4965-4967
7104683 CIFAs2 Ba0.61 Fe2 K0.35 Sn0.04I 4/m m m3.9063; 3.9063; 13.352
90; 90; 90
203.75Mathieu, Josiah L; Latturner, Susan E
Zintl phase as dopant source in the flux synthesis of Ba(1-x)K(x)Fe(2)As(2) type superconductors.
Chemical communications (Cambridge, England), 2009, 34, 4965-4967
7104681 CIFAs2 Ba0.34 Fe2 K0.66I 4/m m m3.8822; 3.8822; 13.5396
90; 90; 90
204.06Mathieu, Josiah L; Latturner, Susan E
Zintl phase as dopant source in the flux synthesis of Ba(1-x)K(x)Fe(2)As(2) type superconductors.
Chemical communications (Cambridge, England), 2009, 34, 4965-4967
7104685 CIFAs2 Ba0.78 Fe2 K0.12 Sn0.1I 4/m m m3.922; 3.922; 13.285
90; 90; 90
204.38Mathieu, Josiah L; Latturner, Susan E
Zintl phase as dopant source in the flux synthesis of Ba(1-x)K(x)Fe(2)As(2) type superconductors.
Chemical communications (Cambridge, England), 2009, 34, 4965-4967
7101499 CIFB2 Os1.42 Ru Ti1.58P -6 2 m8.8554; 8.8554; 3.0336
90; 90; 120
206.02B.P.Fokwa T.; J.von Appen; R.Dronskowski
Synthesis of a missing structural link: The first trigonal planar B4 units in the novel complex boride Ti1+xOs2_xRuB2 (x = 0.6)
Chemical Communications, 2006
7104409 CIFC H3 O3P 1 21/n 15.8093; 3.1657; 11.676
90; 106.01; 90
206.39Casati, Nicola; Macchi, Piero; Sironi, Angelo
Hydrogen migration in oxalic acid di-hydrate at high pressure?
Chemical communications (Cambridge, England), 2009, 34, 2679-2681
7104684 CIFAs2 Ba0.68 Fe2 K0.24 Sn0.07I 4/m m m3.946; 3.946; 13.431
90; 90; 90
209.1Mathieu, Josiah L; Latturner, Susan E
Zintl phase as dopant source in the flux synthesis of Ba(1-x)K(x)Fe(2)As(2) type superconductors.
Chemical communications (Cambridge, England), 2009, 34, 4965-4967

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