Crystallography Open Database

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7054164 CIFC Fe N2P 63/m m c3.2689; 3.2689; 9.4008
90; 90; 120
86.996Herlitschke, M.; Tchougréeff, A. L.; Soudackov, A. V.; Klobes, B.; Stork, L.; Dronskowski, R.; Hermann, R. P.
Magnetism and lattice dynamics of FeNCN compared to FeO
New J. Chem., 2014, 38, 4670
7061268 CIFCu H2 O5 SP -15.0281; 5.1502; 7.5607
108.592; 108.382; 91.359
174.41Ibrahim, Mukaila A.; Boeré, René T.
The copper sulfate hydration cycle. Crystal structures of CuSO4 (Chalcocyanite), CuSO4·H2O (Poitevinite), CuSO4·3H2O (Bonattite) and CuSO4·5H2O (Chalcanthite) at low temperature using non-spherical atomic scattering factors
New Journal of Chemistry, 2022, 46, 5479-5488
1008258 CIFCo La O4 SrI 4/m m m3.796; 3.796; 12.447
90; 90; 90
179.4Demazeau, G; Courbin, P; le, Flem G; Pouchard, M; Hagenmueller, P; Soubeyroux, J L; Main, I G; Robins, G A
Proprietes structurales et magnetiques de Sr La Co O~4~. Une discussion de la structure electronique du cobalt trivalent
Nouveau Journal de Chimie, 1979, 3, 171-174
1008259 CIFCo La O4 SrI 4/m m m3.799; 3.799; 12.454
90; 90; 90
179.7Demazeau, G; Courbin, P; le, Flem G; Pouchard, M; Hagenmueller, P; Soubeyroux, J L; Main, I G; Robins, G A
Proprietes structurales et magnetiques de Sr La Co O~4~. Une discussion de la structure electronique du cobalt trivalent
Nouveau Journal de Chimie, 1979, 3, 171-174
1008260 CIFCo La O4 SrI 4/m m m3.806; 3.806; 12.5
90; 90; 90
181.1Demazeau, G; Courbin, P; le, Flem G; Pouchard, M; Hagenmueller, P; Soubeyroux, J L; Main, I G; Robins, G A
Proprietes structurales et magnetiques de Sr La Co O~4~. Une discussion de la structure electronique du cobalt trivalent
Nouveau Journal de Chimie, 1979, 3, 171-174
1008261 CIFCo La O4 SrI 4/m m m3.807; 3.807; 12.52
90; 90; 90
181.5Demazeau, G; Courbin, P; le, Flem G; Pouchard, M; Hagenmueller, P; Soubeyroux, J L; Main, I G; Robins, G A
Proprietes structurales et magnetiques de Sr La Co O~4~. Une discussion de la structure electronique du cobalt trivalent
Nouveau Journal de Chimie, 1979, 3, 171-174
1008262 CIFCo La O4 SrI 4/m m m3.811; 3.811; 12.554
90; 90; 90
182.3Demazeau, G; Courbin, P; le, Flem G; Pouchard, M; Hagenmueller, P; Soubeyroux, J L; Main, I G; Robins, G A
Proprietes structurales et magnetiques de Sr La Co O~4~. Une discussion de la structure electronique du cobalt trivalent
Nouveau Journal de Chimie, 1979, 3, 171-174
1008263 CIFCo La O4 SrI 4/m m m3.817; 3.817; 12.6
90; 90; 90
183.6Demazeau, G; Courbin, P; le, Flem G; Pouchard, M; Hagenmueller, P; Soubeyroux, J L; Main, I G; Robins, G A
Proprietes structurales et magnetiques de Sr La Co O~4~. Une discussion de la structure electronique du cobalt trivalent
Nouveau Journal de Chimie, 1979, 3, 171-174
1008264 CIFCo La O4 SrI 4/m m m3.824; 3.824; 12.659
90; 90; 90
185.1Demazeau, G; Courbin, P; le, Flem G; Pouchard, M; Hagenmueller, P; Soubeyroux, J L; Main, I G; Robins, G A
Proprietes structurales et magnetiques de Sr La Co O~4~. Une discussion de la structure electronique du cobalt trivalent
Nouveau Journal de Chimie, 1979, 3, 171-174
7058489 CIFBi Na2 S4 SbF m -3 m5.7603; 5.7603; 5.7603
90; 90; 90
191.13Alahmari, Fatimah; Dey, Somnath; Emwas, Abdul-Hamid; Davaasuren, Bambar; Rothenberger, Alexander
Ultra-low thermal conductivity in Na/Sb chalcobismuthates: synthesis, crystal structures, optical properties and 23Na NMR spectroscopy
New Journal of Chemistry, 2019, 43, 10814
7052608 CIFC2 H2 Br Cu NP -13.9006; 6.928; 7.7307
107.693; 99.426; 94.527
194.49Pospisil, Jiri; Jess, Inke; Näther, Christian; Necas, Marek; Taborsky, Petr
Luminescence properties of “double-stranded staircase” copper(i) halide coordination polymers with N-containing ligands
New Journal of Chemistry, 2011, 35, 861
7054719 CIFC4 H4 O2P 1 21 13.8248; 7.0987; 7.7801
90; 101.058; 90
207.32Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7054714 CIFC4 H4 O2P -15.0156; 6.9262; 7.0836
112.956; 97.227; 107.388
207.85Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7054720 CIFC4 H4 O2P 1 21 13.8518; 7.0956; 7.7924
90; 100.862; 90
209.16Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7062967 CIFB4 H16 HfP -4 3 m5.946; 5.946; 5.946
90; 90; 90
210.2Burkmann, Konrad; Habermann, Franziska; Schumann, Erik; Kraus, Jakob; Störr, Bianca; Schmidt, Horst; Brendler, Erica; Seidel, Jürgen; Bohmhammel, Klaus; Kortus, Jens; Mertens, Florian
Structural and thermodynamic investigations of Zr(BH4)4 and Hf(BH4)4 between 280 K and their decomposition temperatures
New Journal of Chemistry, 2024, 48, 2743-2754
7054715 CIFC4 H4 O2P -15.0359; 6.9758; 7.1152
112.963; 97.033; 107.706
210.8Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7062966 CIFB4 H16 ZrP -4 3 m5.955; 5.955; 5.955
90; 90; 90
211.2Burkmann, Konrad; Habermann, Franziska; Schumann, Erik; Kraus, Jakob; Störr, Bianca; Schmidt, Horst; Brendler, Erica; Seidel, Jürgen; Bohmhammel, Klaus; Kortus, Jens; Mertens, Florian
Structural and thermodynamic investigations of Zr(BH4)4 and Hf(BH4)4 between 280 K and their decomposition temperatures
New Journal of Chemistry, 2024, 48, 2743-2754
7058490 CIFBi Na2 Sb Se4F m -3 m5.9648; 5.9648; 5.9648
90; 90; 90
212.22Alahmari, Fatimah; Dey, Somnath; Emwas, Abdul-Hamid; Davaasuren, Bambar; Rothenberger, Alexander
Ultra-low thermal conductivity in Na/Sb chalcobismuthates: synthesis, crystal structures, optical properties and 23Na NMR spectroscopy
New Journal of Chemistry, 2019, 43, 10814
7054721 CIFC4 H4 O2P 1 21 13.8856; 7.1138; 7.8353
90; 100.93; 90
212.65Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7054716 CIFC4 H4 O2P -15.058; 7.0169; 7.1325
112.92; 96.962; 108.002
213.14Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7054722 CIFC4 H4 O2P 1 21 13.8912; 7.1141; 7.8453
90; 100.8; 90
213.33Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7054723 CIFC4 H4 O2P 1 21 13.9127; 7.1074; 7.8489
90; 100.422; 90
214.67Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7054717 CIFC4 H4 O2P -15.0673; 7.0638; 7.163
113.064; 96.689; 108.347
215.3Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7054718 CIFC4 H4 O2P 1 21 13.9158; 7.1104; 7.871
90; 100.59; 90
215.42Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7054724 CIFC4 H4 O2P 1 21 13.9417; 7.1096; 7.878
90; 100.25; 90
217.25Saraswatula, Viswanadha G.; Bhattacharya, Suman; Saha, Binoy K.
Can the thermal expansion be controlled by varying the hydrogen bond dimensionality in polymorphs?
New J. Chem., 2015, 39, 3345
7054634 CIFDy0.5 Mn O3 Yb0.5P n m a5.8352; 7.3473; 5.2561
90; 90; 90
225.34Zhang, Yingnan; Liu, Fuyang; Zheng, Tong; Zhang, Ziqing; Liu, Wei; Zhao, Xudong; Liu, Xiaoyang
Synthesis of perovskite-type manganites Yb1−xDyxMnO3(0.1 ≤ x ≤ 0.5) via solid-state reaction and high-pressure flux methods followed by structural characterization and magnetic property studies
New J. Chem., 2015, 39, 2596
7051493 CIFC H6 N2 O2 SP -15.427; 5.828; 7.649
91.97; 95.84; 107.41
229.1Structure and Vibrational Spectroscopy of Methanesulfonic Acid Hydrazide: an Experimental and Theoretical Study
New Journal of Chemistry, 1999
7058714 CIFCo2 Li3 O6 SbC 1 2/m 15.24111; 9.0391; 5.18179
90; 110.049; 90
230.61Stratan, Mikhail I.; Shukaev, Igor L.; Vasilchikova, Tatyana M.; Vasiliev, Alexander N.; Korshunov, Artem N.; Kurbakov, Alexander I.; Nalbandyan, Vladimir B.; Zvereva, Elena A.
Synthesis, structure and magnetic properties of honeycomb-layered Li3Co2SbO6 with new data on its sodium precursor, Na3Co2SbO6
New Journal of Chemistry, 2019, 43, 13545
7060604 CIFC4 H10 N10 O2P 13.7934; 7.4317; 8.7328
105.198; 100.874; 92.381
232.24Chen, Xiang; Guo, Zhaoqi; Zhang, Cong; Zhang, Jianguo; Ma, Haixia
Boosting intermolecular interactions of fused cyclic explosives: the way to thermostable and insensitive energetic materials with high density
New Journal of Chemistry, 2021, 45, 9358-9367
7057771 CIFBa Cl Cu H3 O3P 1 21/m 14.1335; 6.674; 9.1613
90; 100.43; 90
248.56Wang, Ming-Qing; Huang, Ya-Xi; Pan, Yuanming; Mi, Jin-Xiao
BaCu(OH)3Cl: a new one-dimensional Mott insulator with a CuO2 chessboard layer
New Journal of Chemistry, 2018, 42, 18077
7058491 CIFBi Na2 Sb Te4F m -3 m6.3315; 6.3315; 6.3315
90; 90; 90
253.82Alahmari, Fatimah; Dey, Somnath; Emwas, Abdul-Hamid; Davaasuren, Bambar; Rothenberger, Alexander
Ultra-low thermal conductivity in Na/Sb chalcobismuthates: synthesis, crystal structures, optical properties and 23Na NMR spectroscopy
New Journal of Chemistry, 2019, 43, 10814
7060620 CIFC4 H6 N4P 1 21 14.9091; 6.622; 8.103
90; 99.75; 90
259.61Braun, Vanessa; Wurzenberger, Maximilian H. H.; Weippert, Valentin; Stierstorfer, Jörg
Tailoring the properties of 3d transition metal complexes with different N-cycloalkyl-substituted tetrazoles
New Journal of Chemistry, 2021, 45, 11042-11050
7061627 CIFC32 Cl0.29 O24P m -3 m6.3959; 6.3959; 6.3959
90; 90; 90
261.64You, Xiuli; Rao, Wenjun; Han, Keke; Wang, Lingyu; Zhang, Mengxia; Wei, Zhenhong
Two quasi-spherical molecules [1,4-diazabicyclo(3.2.2)nonane]X (X = ClO4, ReO4) exhibit switchable phase transition, dielectric and second-harmonic-generation properties
New Journal of Chemistry, 2022, 46, 14404-14409
7050838 CIFC2 H5 O4 P ZnP m n 215.6805; 9.8101; 4.7988
90; 90; 90
267.419Menaa, Bouzid; Kariuki, Benson M.; Shannon, Ian J.
Preparation using metal oxide precursors and crystal structures of the copper and zinc vinylphosphonate materials M(O3PC2H3)·H2O (M = Cu, Zn)Electronic supplementary information (ESI) available: rotatable 3-D crystal structure diagrams in CHIME format. See http://www.rsc.org/suppdata/nj/b2/b200438k/
New Journal of Chemistry, 2002, 26, 906
7061269 CIFCu O4 SP n m a8.3958; 6.676; 4.827
90; 90; 90
270.56Ibrahim, Mukaila A.; Boeré, René T.
The copper sulfate hydration cycle. Crystal structures of CuSO4 (Chalcocyanite), CuSO4·H2O (Poitevinite), CuSO4·3H2O (Bonattite) and CuSO4·5H2O (Chalcanthite) at low temperature using non-spherical atomic scattering factors
New Journal of Chemistry, 2022, 46, 5479-5488
7050634 CIFC6 H4 F4 I2 N2P -16.2536; 6.4403; 7.5067
106.843; 107.535; 93.925
271.87Chu, Qianli; Wang, Zheming; Huang, Qichen; Yan, Chunhua; Zhu, Shizheng
Fluorine-containing donor-acceptor complexes: crystallographic study of the interactions between electronegative atoms (N, O, S) and halogen atoms (I, Br)
New Journal of Chemistry, 2003, 27, 1522
7062019 CIFNa Sc Se2R -3 m :H3.9191; 3.9191; 20.708
90; 90; 120
275.45Panigrahi, Gopabandhu; Yadav, Sweta; Jana, Subhendu; Ghosh, Arghya; Niranjan, Manish K.; Prakash, Jai
Syntheses and characterization of two new layered ternary chalcogenides NaScQ2 (Q = Se and Te)
New Journal of Chemistry, 2022, 46, 22076-22087
7061628 CIFC14 O4 ReP -4 2 m6.8907; 6.8907; 5.8523
90; 90; 90
277.88You, Xiuli; Rao, Wenjun; Han, Keke; Wang, Lingyu; Zhang, Mengxia; Wei, Zhenhong
Two quasi-spherical molecules [1,4-diazabicyclo(3.2.2)nonane]X (X = ClO4, ReO4) exhibit switchable phase transition, dielectric and second-harmonic-generation properties
New Journal of Chemistry, 2022, 46, 14404-14409
7052848 CIFC7 H6 N2P 1 21 17.4285; 5.748; 7.6305
90; 118.462; 90
286.43González, J. J. L.; Ureña, F. P.; Moreno, J. R. A.; Mata, I.; Molins, E.; Claramunt, R. M.; López, C.; Alkorta, I.; Elguero, J.
The chiral structure of 1H-indazoles in the solid state: a crystallographic, vibrational circular dichroism and computational study
New Journal of Chemistry, 2012, 36, 749
7051298 CIFC6 H8 N2P 1 21/n 15.7021; 5.048; 10.664
90; 104.549; 90
297.12New Journal of Chemistry, 2000
7060341 CIFC4 H10 N12 O6P -16.672; 6.9096; 6.992
73.521; 89.005; 75.832
299.22Zhu, Jiaping; Xu, Jielai; Yao, Chaojian; Zhan, Tong; Liu, Weibing; Tan, Hua
A new 3D Ag(i)-based high-energy metal organic frameworks (HE-MOFs): synthesis, crystal structure and explosive performance
New Journal of Chemistry, 2021, 45, 3552-3558
7058776 CIFC3 H6 F2 N2 O3P -15.5333; 6.1726; 9.2437
91.249; 106.658; 92.337
302.03Chen, Jifeng; Yu, Yi; Zhang, Shujuan; Li, Yuchuan; Pang, Siping
Energetic materials with fluorinated four-membered heterocyclic ring: 3,3′-difluoroazetidine (DFAZ) salts
New Journal of Chemistry, 2019, 43, 15115
7057578 CIFC14 H10 O10P -14.60137; 7.6252; 9.3955
101.958; 96.9215; 103.461
308.669Tokutomi, Hisashi; Wu, JianYun; Takeda, Takashi; Hoshino, Norihisa; Akutagawa, Tomoyuki
Phase transition and molecular assembly structure of ellagic acid ester derivatives
New Journal of Chemistry, 2018, 42, 14700
7061653 CIFC4 H4 N4 O4P -15.0887; 7.8054; 7.906
89.639; 80.847; 89.131
309.98Zhang, Qi; He, Chunlin; Pang, Siping
Synthesis of heterocyclic (triazole, furoxan, furazan) fused pyridazine di-N-oxides via hypervalent iodine oxidation
New Journal of Chemistry, 2022, 46, 14324-14327
7056611 CIFC6 H4 F2 N4 O12P -16.1749; 6.3972; 9.0143
78.006; 80.204; 63.912
311.56Ma, Jinchao; Yang, Hongwei; Cheng, Guangbin
Study on the synthesis of 2-fluoro-2,2-dinitroethyl esters as potential melt cast matrix in explosive charges
New J. Chem., 2017
7053549 CIFC14 H15 N O5P 15.3583; 5.8497; 10.4352
88.144; 75.461; 82.331
313.78Leong, Wei Lee; Vittal, Jagadese J.
Alkali metal ion directed self-assembled Ni(ii) molecular clusters
New Journal of Chemistry, 2010, 34, 2145
7051495 CIFC5 H5 Cl2 NP 1 21/m 14.5137; 7.925; 8.898
90; 99.173; 90
314.24Freytag, Matthias; Jones, Peter G.; Ahrens, Birte; Fischer, Axel
Hydrogen bonding and halogen...halogen contacts in 4-halopyridinium halides
New Journal of Chemistry, 1999
7052662 CIFC8 H22 N4 O4P -15.1642; 7.4945; 8.4337
94.823; 96.022; 101.486
316.26Martí-Rujas, Javier; Kariuki, Benson M.; Hughes, Colan E.; Morte-Ródenas, Anabel; Guo, Fang; Glavcheva-Laleva, Zornitza; Taştemür, Kemal; Ooi, Li-ling; Yeo, Lily; Harris, Kenneth D. M.
Structural diversity, but no polymorphism, in a homologous family of co-crystals of urea and α,ω-dihydroxyalkanes
New Journal of Chemistry, 2011, 35, 1515
7052009 CIFC6 H8 N2 O2P -13.9193; 5.754; 14.366
100.027; 96.109; 92.374
316.6Barnett, Sarah A.; Hulme, Ashley T.; Issa, Nizar; Lewis, Thomas C.; Price, Louise S.; Tocher, Derek A.; Price, Sarah L.
The observed and energetically feasible crystal structures of 5-substituted uracils
New Journal of Chemistry, 2008, 32, 1761
7052257 CIFC7 H5 Cl O2P -114.21; 6.072; 3.747
87.68; 100.32; 93
317.48Wilson, Chick C.; Xu, Xuelian; Florence, Alastair J.; Shankland, Norman
Temperature dependence of proton transfer in 4-chlorobenzoic acid
New Journal of Chemistry, 2006, 30, 979

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