Crystallography Open Database

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1008186 CIFI3 ThC c c m8.735; 20.297; 14.661
90; 90; 90
2599.3Beck, H P; Strobel, C
Th I~3~, ein Janus unter den Verbindungen mit Metall-Metall- Wechselwirkungen
Angewandte Chemie (German Edition), 1982, 94, 558-559
1512261 CIFC16 H88.8 Br N O26.4C c c m33.115; 33.158; 50.499
90; 90; 90
55449Rodionova, Tatyana V.; Komarov, Vladislav Yu; Villevald, Galina V.; Karpova, Tamara D.; Kuratieva, Natalia V.; Manakov, Andrey Yu
Calorimetric and structural studies of tetrabutylammonium bromide ionic clathrate hydrates.
The journal of physical chemistry. B, 2013, 117, 10677-10685
1524699 CIFAl2 Pb Se4C c c m6.36; 10.63; 10.78
90; 90; 90
728.801Klee, W.; Schaefer, H.
Zur Kenntnis von Pb Al2 Se4 und Pb Ga2 Se4
Materials Research Bulletin, 1980, 15, 1033-1038
1525007 CIFD3.4 Ti4C c c m4.189; 4.23; 4.584
90; 90; 90
81.226Numakura, H.; Koiwa, M.; Asano, H.; Izumi, F.
Neutron diffraction study of the metastable gamma titanium deuteride
Acta Metallurgica, 1988, 36, 2267-2273
1525247 CIFMo20 O64 U3C c c m8.246; 28.76; 19.78
90; 90; 90
4690.92Serezhkin, V.N.; Kovba, L.M.; Trunov, V.K.
Structure of the double oxide alpha-U3 Mo20 O64
Kristallografiya, 1973, 18, 961-965
1525902 CIFC0.165 H0.24 Al3.992 Fe0.55 Mg1.464 Na0.05 O18.45 Si4.994C c c m17.109; 9.7423; 9.3318
90; 90; 90
1555.43Malcherek, T.; McCammon, C.; Tazzoli, V.; Ottolini, L.; Domeneghetti, M.C.; Carpenter, M.A.
Structural properties of ferromagnesian cordierites
American Mineralogist, 2001, 86, 66-79
1525904 CIFAl3.982 Fe1.265 H0.96 Li0.04 Mg0.716 Na0.091 O18.48 Si4.989C c c m17.1735; 9.7859; 9.3113
90; 90; 90
1564.84Malcherek, T.; Tazzoli, V.; Domeneghetti, M.C.; Ottolini, L.; Carpenter, M.A.; McCammon, C.
Structural properties of ferromagnesian cordierites
American Mineralogist, 2001, 86, 66-79
1527410 CIFAl4 H1.5 Mg2 O18.75 Si5C c c m17.083; 9.738; 9.335
90; 90; 90
1552.92Gibbs, G.V.
The polymorphism of cordierite(I): The crystal structure of low cordierite
American Mineralogist, 1966, 51, 1068-1087
1528242 CIFCr I6 Tl4C c c m12.941; 12.596; 9.602
90; 90; 90
1565.17Zandbergen, H.W.
Neutron powder diffraction on alpha-Tl4 Cr I6 and beta-Tl4 Cr I6
Journal of Solid State Chemistry, 1981, 38, 239-245
1529567 CIFAl4 Fe0.58 H1.7 Li0.36 Mg1.06 Na0.36 O18.85 Si5C c c m17.056; 9.783; 9.335
90; 90; 90
1557.63Armbruster, T.
Role of Na in the structure of low-cordierite: A single crystal X-ray study
American Mineralogist, 1986, 71, 746-757
1530762 CIFCa8.82 Cu24 La5.18 O41C c c m11.305; 12.61; 27.608
90; 90; 90
3935.69Siegrist, T.; Schneemeyer, L.F.; Sunshine, S.A.; Waszczak, J.V.; Roth, R.S.
A new layered cuprate structure-type, (A1-x A'x)14 Cu24 O41
Materials Research Bulletin, 1988, 23, 1429-1438
1533672 CIFCa10 Cu24 O41 Pr4C c c m11.278; 12.448; 27.486
90; 90; 90
3858.72Song, G.B.; Chen, X.L.; Han, C.Q.; Liang, J.K.; Liu, Q.L.; Liu, F.S.; Zhou, Y.Q.; Rao, G.H.
Subsolidus phase relation and crystal structure of compounds in the Pr Ox - Ca O - Cu O system
Journal of Solid State Chemistry, 2004, 177, 2394-2403
1536651 CIFGa2 Sr Te4C c c m6.74; 11.621; 11.634
90; 90; 90
911.239Eisenmann, B.; Schaefer, H.; Jakowski, M.
Neue ternaere Varianten der Tl Se-Struktur: zur Kenntnis von Ba Al2 Te4(II), Sr Ga2 Te4, Sr In2 Te4 und Ba In2 Te4
Revue de Chimie Minerale, 1982, 19, 263-273
1536655 CIFIn2 Sr Te4C c c m6.74; 11.621; 11.634
90; 90; 90
911.239Eisenmann, B.; Jakowski, M.; Schaefer, H.
Neue ternaere Varianten der Tl Se-Struktur: zur Kenntnis von Ba Al2 Te4(II), Sr Ga2 Te4, Sr In2 Te4 und Ba In2 Te4
Revue de Chimie Minerale, 1982, 19, 263-273
1536658 CIFBa In2 Te4C c c m6.74; 11.621; 11.634
90; 90; 90
911.239Eisenmann, B.; Jakowski, M.; Schaefer, H.
Neue ternaere Varianten der Tl Se-Struktur: zur Kenntnis von Ba Al2 Te4(II), Sr Ga2 Te4, Sr In2 Te4 und Ba In2 Te4
Revue de Chimie Minerale, 1982, 19, 263-273
1539972 CIFAl3.39 Be0.61 Ca0.19 Fe0.14 H1.84 Mg1.86 Na0.28 O18.92 Si5C c c m16.85; 9.729; 9.298
90; 90; 90
1524.26Yakubovich, O.V.; Massa, W.; Gavrilenko, P.G.; Pekov, I.V.; Chukanov, N.V.
Crystal structure of the Na-, Ca-, Be-cordierite and crystallochemical regularities in the cordierite-sekaninaite series
Kristallografiya, 2004, 49, 1049-1060
1544457 CIFBa La Mn O4C c c m5.504; 5.502; 13.265
90; 90; 90
401.7Nakano, H.; Kawabata, N.; Kamegashira, N.
New phase of BaLaMnO4-x formed by annealing in a reduced atmosphere
Journal of the Ceramic Society of Japan, 2008, 116, 445-448
1548717 CIFAl4 Fe2 O18 Si5C c c m17.2306; 9.8239; 9.2892
90; 90; 90
1572.4Udo Haefeker; Reinhard Kaindl; Peter Tropper; Hannes Kruger; Volker Kahlenberg; Maria Orlova
Structural investigations of the two polymorphs of synthetic Fe-cordierite and Raman spectroscopy of hexagonal Fe-cordierite
Mineralogy and Petrology, 2014, 108, 469-478
1556978 CIFAl3.96 Fe0.42 H0.9 Mg1.57 Mn0.07 Na0.07 O18.45 Si4.98C c c m16.959; 9.653; 9.217
90; 90; 90
1508.9Likhacheva, A.Y.; Goryainov, S.V.; Bulbak, T.A.
An X-ray diffraction study of the pressure-induced hydration in cordierite at 4-5 GPa : at 4.9 GPa
American Mineralogist, 2013, 98, 181-186
1556979 CIFAl3.96 Fe0.42 H0.9 Mg1.57 Mn0.07 Na0.07 O18.45 Si4.98C c c m16.944; 9.656; 9.216
90; 90; 90
1507.8Likhacheva, A.Y.; Goryainov, S.V.; Bulbak, T.A.
An X-ray diffraction study of the pressure-induced hydration in cordierite at 4-5 GPa : at 4.4 GPa
American Mineralogist, 2013, 98, 181-186
1556980 CIFAl3.96 Fe0.42 H0.9 Mg1.57 Mn0.07 Na0.07 O18.45 Si4.98C c c m17.104; 9.746; 9.333
90; 90; 90
1555.8Likhacheva, A.Y.; Goryainov, S.V.; Bulbak, T.A.
An X-ray diffraction study of the pressure-induced hydration in cordierite at 4-5 GPa : at 1 bar
American Mineralogist, 2013, 98, 181-186
1558021 CIFC20 H44 Be8 I2 N16 OC c c m20.1994; 21.2118; 23.3361
90; 90; 90
9998.72Müller, Matthias; Karttunen, Antti J.; Buchner, Magnus R.
Speciation of Be2+ in acidic liquid ammonia and formation of tetra- and octanuclear beryllium amido clusters
Chemical Science, 2020, 11, 5415-5422
1563502 CIFAl1.97 Fe0.18 Mg1.82 Na0.03 O18.43 Si6.81C c c m17.068; 9.718; 9.336
90; 90; 90
1548.5Miletich, Ronald; Diego Gatta, G.; Redhammer, Günther J.; Burchard, Michael; Meyer, Hans-Peter; Weikusat, Christian; Rotiroti, Nicola; Glasmacher, Ulrich A.; Trautmann, Christina; Neumann, Reinhard
Structure alterations in microporous (Mg,Fe)2Al4Si5O18 crystals induced by energetic heavy-ion irradiation
Journal of Solid State Chemistry, 2010, 183, 2372-2381
1563503 CIFAl1.93 Fe0.06 Mg1.94 Na0.05 O18.78 Si6.72C c c m17.076; 9.735; 9.341
90; 90; 90
1552.8Miletich, Ronald; Diego Gatta, G.; Redhammer, Günther J.; Burchard, Michael; Meyer, Hans-Peter; Weikusat, Christian; Rotiroti, Nicola; Glasmacher, Ulrich A.; Trautmann, Christina; Neumann, Reinhard
Structure alterations in microporous (Mg,Fe)2Al4Si5O18 crystals induced by energetic heavy-ion irradiation
Journal of Solid State Chemistry, 2010, 183, 2372-2381
1571098 CIFC5.52 Co0.92 Cu N5.52 Rb0.9C c c m10.7927; 9.9495; 10.0194
90; 90; 90
1075.9Boström, Hanna L B; Cairns, Andrew B.; Chen, Muzi; Daisenberger, Dominik; Ridley, Christopher J.; Funnell, Nicholas P.
The pressure response of Jahn-Teller-distorted Prussian blue analogues.
Chemical science, 2024, 15, 3155-3164
2200748 CIF
HKL
Paper
C10 H10 B Co F4C c c m7.3586; 11.9176; 12.4369
90; 90; 90
1090.68Cotton, F. Albert; Daniels, Lee M.; Wilkinson, Chad C.
A highly disordered cobaltocenium salt
Acta Crystallographica Section E, 2001, 57, m529-m530
2201809 CIF
Paper
C8 H26 F6 Ge N6 NiC c c m9.5937; 15.193; 10.819
90; 90; 90
1576.9Hong-Xia Zhang; Guo-Yu Yang; Yan-Qiong Sun
Bis(diethylenetriamine-κ^3^<i>N</i>)nickel hexafluorogermanate
Acta Crystallographica Section E, 2003, 59, m185-m187
2206241 CIF
HKL
Paper
C14 H10 Cu2 N6C c c m9.231; 13.375; 13.354
90; 90; 90
1648.7Xiaohua Pu; Xiaoming Jiang; Yibin Wei; Yanping Li; Pin Yang
Poly[dipyridinecopper(II)-μ-cyano-copper(II)-tri-μ-cyano]
Acta Crystallographica Section E, 2005, 61, m1393-m1395
2224967 CIF
HKL
Paper
C14 H10 Cd N6 ZnC c c m9.514; 13.935; 13.965
90; 90; 90
1851.4Li, Sheng; Tang, Kun; Zhang, Fu-Li
Poly[tetra-μ-cyanido-dipyridinecadmium(II)zinc(II)]
Acta Crystallographica Section E, 2010, 66, m108
2230507 CIF
HKL
Paper
C8 H26 Cl6 Co In N6C c c m10.8925; 14.7291; 12.2205
90; 90; 90
1960.62Wu, Qihui; Chen, Shangwen; Zhang, Cailing; Zhi, Xia; Chen, Zelin
Bis(diethylenetriamine)cobalt(III) hexachloridoindate(III)
Acta Crystallographica Section E, 2011, 67, m731
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
4132298 CIFC51 H12 F24 N6C c c m15.3843; 93.285; 53.37
90; 90; 90
76593Hashim, Mohamed I.; Le, Ha T. M.; Chen, Teng-Hao; Chen, Yu-Sheng; Daugulis, Olafs; Hsu, Chia-Wei; Jacobson, Allan J.; Kaveevivitchai, Watchareeya; Liang, Xiao; Makarenko, Tatyana; Miljanić, Ognjen Š; Popovs, Ilja; Tran, Hung Vu; Wang, Xiqu; Wu, Chia-Hua; Wu, Judy I.
Dissecting Porosity in Molecular Crystals: Influence of Geometry, Hydrogen Bonding, and [π···π] Stacking on the Solid-State Packing of Fluorinated Aromatics.
Journal of the American Chemical Society, 2018, 140, 6014-6026
4133382 CIFC60 H126 Br10 Mo6 N6 S18C c c m12.4938; 42.4264; 22.2065
90; 90; 90
11770.9Ji, Zhe; Trickett, Christopher; Pei, Xiaokun; Yaghi, Omar M.
Linking Molybdenum-Sulfur Clusters for Electrocatalytic Hydrogen Evolution.
Journal of the American Chemical Society, 2018, 140, 13618-13622
4301651 CIFC20 H11 Cu N0 O7C c c m15.9568; 29.329; 28.657
90; 90; 90
13411.4Shuting Wu; Liqing Ma; La-Sheng Long; Lan-Sun Zheng; Wenbin Lin
Three-Dimensional Metal-Organic Frameworks Based on Functionalized Tetracarboxylate Linkers: Synthesis, Strucures, and Gas Sorption Studies
Inorganic Chemistry, 2009, 48, 2436-2442
4301789 CIFC25 H64 Cu N6 O30C c c m9.0229; 21.6107; 24.0491
90; 90; 90
4689.4Patrick E. Ryan; Christophe Lescop; Dominic Laliberté; Tamara Hamilton; Thierry Maris; James D. Wuest
Engineering New Metal-Organic Frameworks Built from Flexible Tetrapyridines Coordinated to Cu(II) and Cu(I)
Inorganic Chemistry, 2009, 48, 2793-2807
4313893 CIFC54 H54 N8 O2 Pt2 S8C c c m11.706; 25.099; 19.033
90; 90; 90
5592.1Bradley W. Smucker; Joshua M. Hudson; Mohammad A. Omary; Kim R. Dunbar
Structural, Magnetic, and Optoelectronic Properties of (Diimine)(dithiolato)platinum(II) and -palladium(II) Complexes and Their Charge-Transfer Adducts with Nitrile Acceptors
Inorganic Chemistry, 2003, 42, 4714-4723
4317108 CIFC2 H2 O5 Pb2C c c m9.3955; 10.8276; 5.8133
90; 90; 90
591.39Catherine M. Mauck; Titus W. P. van den Heuvel; Michaela M. Hull; Matthias Zeller; Catherine M. Oertel
Synthesis and Structures of Pb3O2(CH3COO)2.0.5H2O and Pb2O(HCOO)2: Two Corrosion Products Revisited
Inorganic Chemistry, 2010, 49, 10736-10743
4318941 CIFC14 H24 Au2 N8 P2C c c m6.011; 23.877; 6.914
90; 90; 90
992.3Zerihun Assefa; Mohammad A. Omary; Brian G. McBurnett; Ahmed A. Mohamed; Howard H. Patterson; Richard J. Staples; John P. Fackler
Syntheses, Structure, and Photoluminescence Properties of the 1-Dimensional Chain Compounds [(TPA)2Au][Au(CN)2] and (TPA)AuCl (TPA = 1,3,5-Triaza-7-phosphaadamantane)
Inorganic Chemistry, 2002, 41, 6274-6280
4319070 CIFH172 Mo16 Na6 Ni22 O216 P26C c c m23.999; 36.595; 20.445
90; 90; 90
17956Charlotte du Peloux; Anne Dolbecq; Pierre Mialane; Jérôme Marrot; Eric Rivière; Francis Sécheresse
A New Two-Dimensional Molybdenum(V) Nickel Phosphate Built Up of [H18(Mo16O32)Ni16(PO4)26(OH)6(H2O)8]18- Wheels
Inorganic Chemistry, 2002, 41, 7100-7104
4324366 CIFC76 H48 Ag2 F12 N6.67 Sb2C c c m12.9114; 22.3632; 11.9153
90; 90; 90
3440.4Kelly J. Kilpin; Martin L. Gower; Shane G. Telfer; Geoffrey B. Jameson; James D. Crowley
Toward the Self-Assembly of Metal-Organic Nanotubes Using Metal-Metal and π-Stacking Interactions: Bis(pyridylethynyl) Silver(I) Metallo-macrocycles and Coordination Polymers
Inorganic Chemistry, 2011, 50, 1123-1134
4333185 CIFC40 H76 Cu2 N8 O62 Si W12C c c m17.74; 22.157; 22.245
90; 90; 90
8744Kong, Xiang-Jian; Ren, Yan-Ping; Zheng, Pei-Qing; Long, Yu-Xiang; Long, La-Sheng; Huang, Rong-Bin; Zheng, Lan-Sun
Construction of Polyoxometalates-Based Coordination Polymers through Direct Incorporation between Polyoxometalates and the Voids in a 2D Network
Inorganic Chemistry, 2006, 45, 10702-10711
4340426 CIFC2 H3 Cu N4C c c m11.3787; 13.5544; 11.5748
90; 90; 90
1785.2Wu, Tao; Yi, Bi-Hua; Li, Dan
Two novel nanoporous supramolecular architectures based on copper(i) coordination polymers with uniform (8, 3) and (8(2)10) nets: in situ formation of tetrazolate ligands.
Inorganic chemistry, 2005, 44, 4130-4132
4343903 CIFCo0.828 O13.968 PtC c c m14.379; 16.501; 5.682
90; 90; 90
1348.16Schultz, A.J.; Underhill, A.E.; Williams, J.M.
Preparation and crystal structure of the new paramagnetic one-dimensional conductor Co0.83 (Pt (C2 O4)2) (H2 O)6
Inorganic Chemistry, 1978, 17, 1313-1315
4345909 CIFC8 H12 Ag2 B12 F12 N4C c c m11.4426; 13.6213; 15.6534
90; 90; 90
2439.8Peryshkov, Dmitry V.; Strauss, Steven H.
Exceptional Structural Compliance of the B12F12(2-) Superweak Anion.
Inorganic chemistry, 2017, 56, 4072-4083
4349599 CIFCs2 H4 Hg O2 Se2C c c m7.5853; 16.7226; 7.0333
90; 90; 90
892.15Donsbach, C.; Dehnen, S.
Syntheses and properties of selenido mercurates with [HgSe2]2−anions in diverse chemical environments
Inorganic Chemistry Frontiers, 2017, 4, 336
4506378 CIFC6 H9 B2 F O5C c c m12.0489; 7.2772; 10.0552
90; 90; 90
881.66Durka, Krzysztof; Jarzembska, Katarzyna N.; Kamiński, Radosław; Luliński, Sergiusz; Serwatowski, Janusz; Woźniak, Krzysztof
Structural and Energetic Landscape of Fluorinated 1,4-Phenylenediboronic Acids
Crystal Growth & Design, 2012, 12, 3720
4506379 CIFC6 H8 B2 F2 O5C c c m12.207; 7.329; 10.0807
90; 90; 90
901.9Durka, Krzysztof; Jarzembska, Katarzyna N.; Kamiński, Radosław; Luliński, Sergiusz; Serwatowski, Janusz; Woźniak, Krzysztof
Structural and Energetic Landscape of Fluorinated 1,4-Phenylenediboronic Acids
Crystal Growth & Design, 2012, 12, 3720
4510276 CIFC26 H42 Cu N10 O10 P2C c c m13.158; 14.942; 16.667
90; 90; 90
3277Gupta, Arvind K.; Srivastava, Anant Kumar; Mahawar, Indra Kumar; Boomishankar, Ramamoorthy
Discrete and Polymeric Cu(II) Complexes Derived from in Situ Generated Pyridyl-Functionalized Bis(amido)phosphate Ligands, [PO2(NHPy)2]−
Crystal Growth & Design, 2014, 14, 1701
4510277 CIFC20 H24 Cu N8 O6 P2C c c m13.158; 14.942; 16.667
90; 90; 90
3277Gupta, Arvind K.; Srivastava, Anant Kumar; Mahawar, Indra Kumar; Boomishankar, Ramamoorthy
Discrete and Polymeric Cu(II) Complexes Derived from in Situ Generated Pyridyl-Functionalized Bis(amido)phosphate Ligands, [PO2(NHPy)2]−
Crystal Growth & Design, 2014, 14, 1701
4510278 CIFC20 H22 Cu N8 O6 P2C c c m13.4495; 15.0521; 16.6729
90; 90; 90
3375.3Gupta, Arvind K.; Srivastava, Anant Kumar; Mahawar, Indra Kumar; Boomishankar, Ramamoorthy
Discrete and Polymeric Cu(II) Complexes Derived from in Situ Generated Pyridyl-Functionalized Bis(amido)phosphate Ligands, [PO2(NHPy)2]−
Crystal Growth & Design, 2014, 14, 1701
4512259 CIFC7 H7 Ag2 I3 N2C c c m10.4808; 12.8829; 20.7792
90; 90; 90
2805.7Shen, Junju; Zhang, Caifeng; Yu, Tanlai; An, Li; Fu, Yunlong
Structural and Functional Modulation of Five 4-Cyanopyridinium Iodoargentates Built Up from Cubane-like Ag4I4Nodes
Crystal Growth & Design, 2014, 14, 6337
4513225 CIFC10 H10 B F4 FeC c c m7.4665; 11.9467; 12.0974
90; 90; 90
1079.09Posner, Shai R.; Lorson, Logan C.; Gell, Aaron R.; Foxman, Bruce M.
Experimental Establishment of Mother‒Daughter Orientation Relationships and Twinning Effects in Phase Transitions: A Great Legacy from Jack Gougoutas and Peggy Etter
Crystal Growth & Design, 2015, 15, 3407
4513434 CIFC44 H26 Cd6 N12 O21C c c m20.7471; 26.2764; 36.8943
90; 90; 90
20113.3Chen, Yuan; Li, Ziyin; Liu, Qing; Shen, Yangcan; Wu, Xiuzhen; Xu, Dandan; Ma, Xiuling; Wang, Lihua; Chen, Qian-Huo; Zhang, Zhangjing; Xiang, Shengchang
Microporous Metal‒Organic Framework with Lantern-like Dodecanuclear Metal Coordination Cages as Nodes for Selective Adsorption of C2/C1Mixtures and Sensing of Nitrobenzene
Crystal Growth & Design, 2015, 15, 3847
4514530 CIFC90 H78 Co5 N4 O34C c c m14.412; 21.469; 35.264
90; 90; 90
10911Natarajan, Kaushik; Gupta, Anoop K.; Ansari, Shagufi Naz; Saraf, Mohit; Mobin, Shaikh M.
Mixed-Ligand-Architected 2D Co(II)-MOF Expressing a Novel Topology for an Efficient Photoanode for Water Oxidation Using Visible Light.
ACS applied materials & interfaces, 2019, 11, 13295-13303
4516584 CIFC32 H16 N4 O8 ZrC c c m38.058; 10.009; 7.2953
90; 90; 90
2778.9Feng, Xuenan; Wang, Xiqian; Wang, Hailong; Wu, Hui; Liu, Zhanning; Zhou, Wei; Lin, Qipu; Jiang, Jianzhuang
Elucidating J-Aggregation Effect in Boosting Singlet Oxygen Evolution Using Zirconium-Porphyrin Frameworks: A Comprehensive Structural, Catalytic, and Spectroscopic Study.
ACS applied materials & interfaces, 2019
4518080 CIFC44 H22 In O8C c c m13.8385; 29.32; 30.758
90; 90; 90
12480Chen, Yongwei; Zhang, Xuan; Chen, Haoyuan; Drout, Riki J.; Chen, Zhijie; Mian, Mohammad Rasel; Maldonado, Rodrigo R.; Ma, Kaikai; Wang, Xingjie; Xia, Qibin; Li, Zhong; Islamoglu, Timur; Snurr, Randall Q.; Farha, Omar K.
Tuning the Atrazine Binding Sites in an Indium-Based Flexible Metal-Organic Framework.
ACS applied materials & interfaces, 2020
7011356 CIFC28 H24 Cd5 N14 OC c c m10.97; 23.744; 15.906
90; 90; 90
4143Yoshikawa, Hirofumi; Nishikiori, Shin-ichi; Watanabe, Tokuko; Ishida, Toshimasa; Watanabe, Go; Murakami, Makoto; Suwinska, Kinga; Luboradzki, Roman; Lipkowski, Janusz
Polycyano‒polycadmate host clathrates including a methylviologen dication. Syntheses, crystal structures and photo-induced reduction of methylviologen dication
Journal of the Chemical Society, Dalton Transactions, 2002, 1907
7011357 CIFC26 H22 Cd5 N16 O5C c c m11.0655; 23.9517; 15.7838
90; 90; 90
4183.3Yoshikawa, Hirofumi; Nishikiori, Shin-ichi; Watanabe, Tokuko; Ishida, Toshimasa; Watanabe, Go; Murakami, Makoto; Suwinska, Kinga; Luboradzki, Roman; Lipkowski, Janusz
Polycyano‒polycadmate host clathrates including a methylviologen dication. Syntheses, crystal structures and photo-induced reduction of methylviologen dication
Journal of the Chemical Society, Dalton Transactions, 2002, 1907
7022071 CIFH134 Mo16 Ni21 O198 P28C c c m24.037; 36.226; 20.476
90; 90; 90
17830Zhang, Weisong; Gong, Jingjing; Zhang, Lili; Yang, Yanan; Liu, Yang; Zhang, Hengchao; Zhang, Guangju; Dong, Huan; Hu, Hailiang; Zhao, Fangfang; Kang, Zhenhui
Transition metal-induced self-assembly of small molybdenum clusters.
Dalton transactions (Cambridge, England : 2003), 2013, 42, 1760-1769
7034684 CIFC54 H38 Cl7 Cu8 N18 O18C c c m15.8022; 24.029; 21.3108
90; 90; 90
8091.9Chen, Di-Ming; Ma, Jian-Gong; Cheng, Peng
Solvent-induced secondary building unit (SBU) variations in a series of Cu(ii) metal-organic frameworks derived from a bifunctional ligand.
Dalton transactions (Cambridge, England : 2003), 2015, 44, 8926-8931
7043371 CIFC5 H28 Ca2 N20 O16C c c m14.9853; 24.4542; 6.7717
90; 90; 90
2481.5He, Piao; Wu, Le; Wu, Jin-Ting; Yin, Xin; Gozin, Michael; Zhang, Jian-Guo
Alkali and alkaline earth metal salts of tetrazolone: structurally interesting and excellently thermostable
Dalton Trans., 2017
7048020 CIFC8 H26 Ge5.88 N2 O21 Si2.63C c c m12.895; 20.421; 20.281
90; 90; 90
5340.6Jo, Donghui; Choi, Wanuk; Shin, Jiho; Hong, Suk Bong
An open-framework silicogermanate regularly constructed from natrolite zeolite chains and Ge<sub>9</sub>O<sub>18</sub>(OH)<sub>4</sub> clusters.
Dalton transactions (Cambridge, England : 2003), 2018, 47, 17122-17126
7059376 CIFC52 H38 Cu2 N6 O SC c c m21.762; 21.7317; 9.6199
90; 90; 90
4549.5Zhang, Jinfang; Xia, Hongchen; Ren, Simeng; Jia, Wen; Zhang, Chi
Three AIE-ligand-based Cu(i) coordination polymers: synthesis, structures and luminescence sensing of TNP
New Journal of Chemistry, 2020, 44, 5285-5292
7100505 CIFC34 H24 Cu2 N2 O10C c c m15.2563; 28.288; 23.5937
90; 90; 90
10182.2Hong-Cai Zhou.; Yanxiong Ke.; Betty A. Ooro; Tracy M. Peterson; Daofeng Sun.
Temperature-dependent supramolecular stereoisomerism in porous copper coordination networks based on a designed carboxylate ligand
Chemical Communications, 2005
7118627 CIFC40 H26 Cu2 O10C c c m13.113; 29.058; 30.167
90; 90; 90
11495Chang, Ganggang; Li, Bin; Wang, Hailong; Hu, Tongliang; Bao, Zongbi; Chen, Banglin
Control of interpenetration in a microporous metal-organic framework for significantly enhanced C2H2/CO2 separation at room temperature.
Chemical communications (Cambridge, England), 2016, 52, 3494-3496
7208537 CIFC31 H46 Fe N8 O8 S2C c c m8.9846; 22.9562; 24.0229
90; 90; 90
4954.8Yu, Fan; Li, Bao
Two novel high-dimensional iron(ii) coordination polymers modeled by semi-rigid tetrapyridines
CrystEngComm, 2012, 14, 6049
7209292 CIFC10 H6 Be4 O12C c c m10.3705; 11.2422; 18.403
90; 90; 90
2145.55Kang, Maoping; Luo, Daibing; Lin, Zhien; Thiele, Günther; Dehnen, Stefanie
Crystalline beryllium carboxylate frameworks containing inorganic chains of BeO4 tetrahedra
CrystEngComm, 2013, 15, 1845
7210303 CIFC84 H60 Eu4 O30 Si3C c c m18.735; 30.214; 24.837
90; 90; 90
14059Xue, Yun-Shan; Zhou, Lian; Liu, Mei-Pin; Liu, Su-Meng; Xu, Yan; Du, Hong-Bin; You, Xiao-Zeng
Construction of lanthanide metal‒organic frameworks with highly-connected topology based on a tetrapodal linker
CrystEngComm, 2013, 15, 6229
7210304 CIFC84 H60 Er4 O30 Si3C c c m18.774; 29.704; 24.89
90; 90; 90
13880Xue, Yun-Shan; Zhou, Lian; Liu, Mei-Pin; Liu, Su-Meng; Xu, Yan; Du, Hong-Bin; You, Xiao-Zeng
Construction of lanthanide metal‒organic frameworks with highly-connected topology based on a tetrapodal linker
CrystEngComm, 2013, 15, 6229
7213707 CIFC16 H48 Ag2 Gd I9 O8 Pb2 S8C c c m10.6777; 24.857; 22.051
90; 90; 90
5852.7Tang, Chunying; Wang, Fang; Jia, Dingxian; Jiang, Wenqing; Zhang, Yong
Syntheses and characterizations of polymeric silver iodoplumbates, and iodoplumbates with lanthanide complexes
CrystEngComm, 2014, 16, 2016
7213708 CIFC16 H48 Ag2 I9 O8 Pb2 S8 TmC c c m10.717; 24.883; 21.972
90; 90; 90
5859.3Tang, Chunying; Wang, Fang; Jia, Dingxian; Jiang, Wenqing; Zhang, Yong
Syntheses and characterizations of polymeric silver iodoplumbates, and iodoplumbates with lanthanide complexes
CrystEngComm, 2014, 16, 2016
7214547 CIFC38 H8 N6 O8 Zn2C c c m21.3799; 21.4597; 27.944
90; 90; 90
12820.9Dau, Phuong V.; Cohen, Seth M.
The influence of nitro groups on the topology and gas sorption property of extended Zn(ii)-paddlewheel MOFs
CrystEngComm, 2013, 15, 9304
7222731 CIFAs K3 O4C c c m10.6011; 11.3521; 16.9401
90; 90; 90
2038.65Emmerling, F.; Idilbi, M.; Roehr, C.
Neue Oxopnictate A(I)3 M(V) O4: Darstellung und Kristallstruktur von A3 As O4 (A = K, Rb, Cs) und K3 Bi O4
Zeitschrift fuer Naturforschung, Teil B. Anorganische Chemie, Organische Chemie (42,1987-), 2002, 57, 599-604
7227294 CIFC6 H4 Mn N4C c c m7.157; 12.806; 7.856
90; 90; 90
720Xia, Bin; Wang, Kai; Wang, Qing-Lun; Ma, Yue; Tong, Yu-Zhang; Liao, Dai-Zheng
Crystal structure and magnetic properties of two manganese(ii) homometallic coordination polymers
CrystEngComm, 2017, 19, 811
7229032 CIFC2 H10 F5 Mn N2C c c m17.105; 17.992; 8.478
90; 90; 90
2609.1Ursula Bentrup; Lidger Schroder; Werner Massa
Crystal structure, thermal decomposition and vibrational spectrum of ethyllendiammonium-pentafluoromanganat(III), enH2MnF5
Zeitschrift fir Naturforschung, 1992, 789-794
7229586 CIFC26 H29 Cl14 Cu O5C c c m19.302; 21.805; 26.364
90; 90; 90
11096Patil, Komal M.; Telfer, Shane; Moratti, Stephen; Qazvini, Omid T.; Hanton, Lyall R.
A Non-Interpenetrated Cu-based MOF Constructed from a Rediscovered Tetrahedral Ligand
CrystEngComm, 2017
7232611 CIFC18 H16 Co N14 O17 P0 W5C c c m13.0024; 21.9573; 22.2526
90; 90; 90
6353.1Wu, Yingying; Li, Xuefei; Liu, Ying; Xiao, Ge; Huang, Yijiao; Li, Yamin; Dang, Dongbin; Bai, Yan
Three novel polyoxometalate-based inorganic‒organic hybrid materials based on 2,6-bis(1,2,4-triazol-1-yl)pyridine
RSC Advances, 2019, 9, 11932
7235763 CIFC16 H8 N4 ZnC c c m25.3033; 26.4643; 7.30733
90; 90; 90
4893.2Galli, S.; Maspero, A.; Giacobbe, C.; Palmisano, G.; Nardo, L.; Comotti, A.; Bassanetti, I.; Sozzani, P.; Masciocchi, N.
When long bis(pyrazolates) meet late transition metals: structure, stability and adsorption of metal‒organic frameworks featuring large parallel channels
Journal of Materials Chemistry A, 2014, 2, 12208
7241357 CIFC18 H30 Cs N10 Nd O7 Re6 S8C c c m10.7133; 18.9023; 21.6443
90; 90; 90
4383.1Litvinova, Yulia M.; Gayfulin, Yakov M.; Brylev, Konstantin; Piryazev, Dmitry A.; van Leusen, Jan; Kögerler, Paul; Mironov, Yuri V.
Metal-organic frameworks with solvent-free lanthanide coordination environments: synthesis from aqueous ethanol solutions
CrystEngComm, 2020
7242028 CIFC50 H26 N8 O21C c c m7.7993; 22.8606; 33.5658
90; 90; 90
5984.7Rani, Pooja; Husain, Ahmad; Shukla, Ananya; Singla, Neha; Srivastava, Ankit Kumar; Kumar, Gulshan; Bhasin, K. K.; Kumar, Girijesh
Functionalized naphthalenediimide based supramolecular charge-transfer complexes via self-assembly and their photophysical properties
CrystEngComm, 2021, 23, 1859-1869
7707263 CIFC12 H8 Cu2 I6 Pb S8C c c m15.931; 13.531; 13.491
90; 90; 90
2908.2Yin, Wen-Yu; Weng, Yi-Gang; Ren, Zhou-Hong; Zhang, Zhi-Ruo; Zhu, Qin-Yu; Dai, Jie
Tetrathiafulvalene-based double metal lead iodides: structures and electrical properties.
Dalton transactions (Cambridge, England : 2003), 2021, 50, 8120-8126
8103144 CIFC144 H72 Dy4 N12 O25 Zn3C c c m16.7295; 32.1935; 33.4739
90; 90; 90
18028.4Sumod George; Israel Goldberg
Crystal structure of catena-tris(5,10,15,20-(4-carboxylatophenyl)porphyrin)-aqua-tetradysprosium-trizinc solvate, (C48H24N4O8Zn)3Dy4(H2O) · (solvent)x
Zeitschrift für Kristallographie - New Crystal Structures, 2011, 226, 411
8104351 CIFAl3.74 Be0.17 Fe0.59 H1.46 Li0.1 Mg1.32 Mn0.02 Na0.27 O18.73 Si5.05C c c m17.066; 9.76; 9.327
90; 90; 90
1553.54Armbruster, T.
Crystal structure refinement and thermal expansion of a Li,Na,Be-cordierite between 100 and 550 K
Zeitschrift fuer Kristallographie (149,1979-), 1986, 174, 205-217
9000114 CIFAs2 Fe2 H2 O10 PbC c c m16.595; 7.58; 12.295
90; 90; 90
1546.59Finney, J. J.
The crystal structure of carminite
American Mineralogist, 1963, 48, 1-13
9000145 CIFAl4 Ca0.03 Fe0.46 H0.96 K0.02 Li0.12 Mg1.54 Na0.1 O18.48 Si5C c c m17.083; 9.738; 9.335
90; 90; 90
1552.92Gibbs, G. V.
The polymorphism of cordierite I: The crystal structure of low cordierite
American Mineralogist, 1966, 51, 1068-1087
9000545 CIFAl3.969 Ca0.02 Fe0.08 H1.12 K0.02 Mg1.91 Mn0.01 Na0.05 O18.56 Si5.031C c c m17.079; 9.73; 9.356
90; 90; 90
1554.77Cohen, J. P.; Ross, F. K.; Gibbs, G. V.
An X-Ray and neutron diffraction study of hydrous low cordierite
American Mineralogist, 1977, 62, 67-78
9000693 CIFAl4 Fe0.09 Mg1.91 O18 Si5C c c m17.113; 9.741; 9.358
90; 90; 90
1559.96Hochella, M. F.; Brown, G. E.; Ross, F. K.; Gibbs, G. V.
High-temperature crystal chemistry of hydrous Mg- and Fe-cordierite White Well, T = 375 C
American Mineralogist, 1979, 64, 337-351
9000694 CIFAl4 Fe0.09 Mg1.91 O18 Si5C c c m17.149; 9.759; 9.352
90; 90; 90
1565.12Hochella, M. F.; Brown, G. E.; Ross, F. K.; Gibbs, G. V.
High-temperature crystal chemistry of hydrous Mg- and Fe-cordierite White Well, T = 775 C
American Mineralogist, 1979, 64, 337-351
9000695 CIFAl4 Fe0.09 Mg1.91 O18 Si5C c c m17.119; 9.746; 9.361
90; 90; 90
1561.81Hochella, M. F.; Brown, G. E.; Ross, F. K.; Gibbs, G. V.
High-temperature crystal chemistry of hydrous Mg- and Fe-cordierite White Well, T = 24 C afer heating.
American Mineralogist, 1979, 64, 337-351
9000696 CIFAl4 Fe1.66 Mg0.34 O18 Si5C c c m17.23; 9.835; 9.314
90; 90; 90
1578.32Hochella, M. F.; Brown, G. E.; Ross, F. K.; Gibbs, G. V.
High-temperature crystal chemistry of hydrous Mg- and Fe-cordierite Dolni Bory, T = 24 C
American Mineralogist, 1979, 64, 337-351
9000697 CIFAl4 Fe1.66 Mg0.34 O18 Si5C c c m17.258; 9.847; 9.328
90; 90; 90
1585.2Hochella, M. F.; Brown, G. E.; Ross, F. K.; Gibbs, G. V.
High-temperature crystal chemistry of hydrous Mg- and Fe-cordierite Dolni Bory, T = 375 C
American Mineralogist, 1979, 64, 337-351
9000750 CIFAl3.843 Fe0.136 H0.86 Mg1.8 O18.86 Si4.838C c c m17.044; 9.716; 9.334
90; 90; 90
1545.71Wallace, J. H.; Wenk, H. R.
Structure variation in low cordierites sci 1542 mono
American Mineralogist, 1980, 65, 96-111
9000751 CIFAl3.83 Fe0.136 H0.85 Mg1.772 O18.85 Si4.796C c c m17.044; 9.716; 9.334
90; 90; 90
1545.71Wallace, J. H.; Wenk, H. R.
Structure variation in low cordierites sci 1542 filter
American Mineralogist, 1980, 65, 96-111
9000752 CIFAl5.743 Fe0.18 H0.71 Mg1.766 O18.71 Si4.823C c c m17.089; 9.737; 9.344
90; 90; 90
1554.8Wallace, J. H.; Wenk, H. R.
Structure variation in low cordierites Brg 50
American Mineralogist, 1980, 65, 96-111
9000753 CIFAl3.879 Fe0.26 H1.22 Mg1.632 O19.22 Si4.833C c c m17.088; 9.726; 9.335
90; 90; 90
1551.46Wallace, J. H.; Wenk, H. R.
Structure variation in low cordierites sci 624
American Mineralogist, 1980, 65, 96-111
9000754 CIFAl3.836 Fe1.252 H0.58 Mg1.252 O18.58 Si4.83C c c m17.114; 9.761; 9.333
90; 90; 90
1559.07Wallace, J. H.; Wenk, H. R.
Structure variation in low cordierites sci 1018
American Mineralogist, 1980, 65, 96-111
9000755 CIFAl3.848 Fe0.732 H0.77 Mg1.162 O18.77 Si4.835C c c m17.098; 9.741; 9.319
90; 90; 90
1552.09Wallace, J. H.; Wenk, H. R.
Structure variation in low cordierites sci 1104
American Mineralogist, 1980, 65, 96-111
9000756 CIFAl3.856 Fe0.772 H0.72 Mg1.176 O18.72 Si4.878C c c m17.14; 9.769; 9.321
90; 90; 90
1560.71Wallace, J. H.; Wenk, H. R.
Structure variation in low cordierites
American Mineralogist, 1980, 65, 96-111
9000995 CIFAl3.84 Be0.16 Fe0.6 H0.6 Mg1.4 Na0.25 O18.6 Si5C c c m17.06; 9.759; 9.322
90; 90; 90
1552.01Armbruster, T.
Role of Na in the structure of low-cordierite: A single-crystal X-ray study Sample: from Alpe Sponda, Central Alps, Switzerland
American Mineralogist, 1986, 71, 746-757
9000996 CIFAl3.6 Be0.4 Fe1.1 H0.8 Li0.14 Mg0.76 Na0.47 O18.8 Si5C c c m17.065; 9.797; 9.293
90; 90; 90
1553.66Armbruster, T.
Role of Na in the structure of low-cordierite: A single-crystal X-ray study Sample: from Kemio Island, Finland
American Mineralogist, 1986, 71, 746-757

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