Crystallography Open Database

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7003652 CIFC39 H57 Cu F6 Fe3 O12 P4 Se3P -6 2 c13.0809; 13.0809; 18.877
90; 90; 120
2797.3Santra, Bidyut Kumar; Chen, Jia-Li; Sarkar, Bijay; Liu, C. W.
The coordination chemistry of selenophosphite ligands. Synthesis and characterization of heterometallic tetranuclear clusters [M{CpFe(CO)2P(Se)(OR)2}3](PF6) (M = Cu, Ag; R = nPr, iPr) and [Cu(μ-X) {CpFe(CO)2P(Se)(OiPr)2}]2 (X = Cl, Br)
Dalton Transactions, 2008, 2270-2276
7016988 CIFC12 H23 Br5 N6P -6 2 c13.2; 13.2; 7.117
90; 90; 120
1073.93Driver, Gordon W.; Mutikainen, Ilpo
The complex story of a simple Brønsted acid: Unusual speciation of HBr in an ionic liquid medium.
Dalton transactions (Cambridge, England : 2003), 2011, 40, 10801-10803
7021184 CIFC36 H108 Cl9 La3 N15 Na3 Ni9 O96P -6 2 c15; 15; 29.211
90; 90; 120
5692Li, Zhong-Yi; Zhu, Jiang; Wang, Xiao-Qun; Ni, Jun; Zhang, Jian-Jun; Liu, Shu-Qin; Duan, Chun-Ying
New 3d-4f heterometallic clusters built from mixed glycine and iminodiacetate acid: dioctahedron {La2Ni9} and onion-like {Gd5}⊂{Ni12} with interesting magnetocaloric effect.
Dalton transactions (Cambridge, England : 2003), 2013, 42, 5711-5717
7030914 CIFC63 H57 F6 N3 P Pt3 S3 TlP -6 2 c15.6681; 15.6681; 13.2867
90; 90; 120
2824.8Belío, Ursula; Fuertes, Sara; Martín, Antonio
Preparation of Pt-Tl clusters showing new geometries. X-ray, NMR and luminescence studies.
Dalton transactions (Cambridge, England : 2003), 2014, 43, 10828-10843
7036757 CIFC24 H49 Co4 N9 O27 P3 S0.5P -6 2 c20.594; 20.594; 6.5304
90; 90; 120
2398.6Begum, S.; Horike, S.; Kitagawa, S.; Krautscheid, H.
Water stable triazolyl phosphonate MOFs: steep water uptake and facile regeneration.
Dalton transactions (Cambridge, England : 2003), 2015, 44, 18727-18730
7047934 CIFC78 H85 Cd3 N13 O25P -6 2 c18.3047; 18.3047; 37.9711
90; 90; 120
11018.2Kang, Da-Wei; Han, Xue; Ma, Xin-Jun; Liu, Ying-Ying; Ma, Jian-Fang
Two cyclotriveratrylene metal-organic frameworks as effective catalysts for Knoevenagel condensation and CO<sub>2</sub> cycloaddition with epoxides.
Dalton transactions (Cambridge, England : 2003), 2018, 47, 16197-16204
7047935 CIFC84 H95 N15 O28 Zn3P -6 2 c19.456; 19.456; 37.381
90; 90; 120
12254.3Kang, Da-Wei; Han, Xue; Ma, Xin-Jun; Liu, Ying-Ying; Ma, Jian-Fang
Two cyclotriveratrylene metal-organic frameworks as effective catalysts for Knoevenagel condensation and CO<sub>2</sub> cycloaddition with epoxides.
Dalton transactions (Cambridge, England : 2003), 2018, 47, 16197-16204
7047936 CIFC81 H78 Cd3 N12 O18P -6 2 c18.113; 18.113; 39.272
90; 90; 120
11158.2Kang, Da-Wei; Han, Xue; Ma, Xin-Jun; Liu, Ying-Ying; Ma, Jian-Fang
Two cyclotriveratrylene metal-organic frameworks as effective catalysts for Knoevenagel condensation and CO<sub>2</sub> cycloaddition with epoxides.
Dalton transactions (Cambridge, England : 2003), 2018, 47, 16197-16204
7049963 CIFC H0 N6 Na6 O73 V15P -6 2 c12.991; 12.991; 23.1099
90; 90; 120
3377.6Mulkapuri, Sateesh; Kurapati, Sathish Kumar; Das, Samar K.
Carbonate encapsulation from dissolved atmospheric CO<sub>2</sub> into a polyoxovanadate capsule.
Dalton transactions (Cambridge, England : 2003), 2019, 48, 8773-8781
7058007 CIFC15 H30 N9 Nd O12 S3P -6 2 c10.84404; 10.84404; 15.4345
90; 90; 120
1571.83Packiaraj, S.; Kanchana, P.; Pushpaveni, A.; Puschmann, H.; Govindarajan, S.
Different coordination geometries of lighter lanthanates driven by the symmetry of guanidines as charge compensators
New Journal of Chemistry, 2019, 43, 979
7058009 CIFC15 H30 N9 O12 Pr S3P -6 2 c10.8781; 10.8781; 15.3633
90; 90; 120
1574.42Packiaraj, S.; Kanchana, P.; Pushpaveni, A.; Puschmann, H.; Govindarajan, S.
Different coordination geometries of lighter lanthanates driven by the symmetry of guanidines as charge compensators
New Journal of Chemistry, 2019, 43, 979
7059326 CIFC H38 B24 K15 N2 Na O68P -6 2 c11.1399; 11.1399; 30.495
90; 90; 120
3277.3Cao, Yuchen; Zhang, Bingbing; Liu, Hongkun; Li, Danni; Wang, Ying
NaK15[B4O5(OH)4]6(NO2)2(CO3)·7H2O: assembly of an unprecedented mixed anion inorganic compound via a facile hydrothermal route
New Journal of Chemistry, 2020, 44, 4253-4256
7060587 CIFC2 H Cl2 N3P -6 2 c11.409; 11.409; 6.5079
90; 90; 120
733.61Kordestani, Nazanin; Amiri Rudbari, Hadi; Correia, Isabel; Valente, Andreia; Côrte-Real, Leonor; Islam, Mohammad Khairul; Micale, Nicola; Braun, Jason D.; Herbert, David E.; Tumanov, Nikolay; Wouters, Johan; Enamullah, Mohammed
Heteroleptic enantiopure Pd(ii)-complexes derived from halogen-substituted Schiff bases and 2-picolylamine: synthesis, experimental and computational characterization and investigation of the influence of chirality and halogen atoms on the anticancer activity
New Journal of Chemistry, 2021, 45, 9163-9180
7100637 CIFC58 Cr6 N2 O48P -6 2 c11.0282; 11.0282; 18.9717
90; 90; 120
1998.2Christian Serre; Gerard Ferey; Caroline Mellot-Draznieks; Franck Millange; Suzy Surble
An new isoreticular class of Metal-Organic-Frameworks with the MIL-88 topology
Chemical Communications, 2006
7100638 CIFC84 Cr6 N56 O50P -6 2 c12.1647; 12.1647; 27.1971
90; 90; 120
3485.4Christian Serre; Gerard Ferey; Caroline Mellot-Draznieks; Franck Millange; Suzy Surble
An new isoreticular class of Metal-Organic-Frameworks with the MIL-88 topology
Chemical Communications, 2006
7100639 CIFC90.4 Fe6 O46.4P -6 2 c10.1751; 10.1751; 23.7722
90; 90; 120
2131.5Christian Serre; Gerard Ferey; Caroline Mellot-Draznieks; Franck Millange; Suzy Surble
An new isoreticular class of Metal-Organic-Frameworks with the MIL-88 topology
Chemical Communications, 2006
7107838 CIFC66 H42 In3 O16P -6 2 c19.4356; 19.4356; 27.893
90; 90; 120
9124.8Fuxing Sun; Jiangtao Jia; Tsolmon Borjigin; Hao Ren; Tingting Zhang; Zheng Bian; Lianxun Gao; Guangshan Zhu
Highly porous and robust ionic MOFs with nia topology constructed by connecting an octahedral ligand and a trigonal prismatic metal cluster
Chem.Commun., 2012, 48, 6010
7107839 CIFC66 H43 Mn3 O16P -6 2 c20.0962; 20.0962; 26.9145
90; 90; 120
9413.4Fuxing Sun; Jiangtao Jia; Tsolmon Borjigin; Hao Ren; Tingting Zhang; Zheng Bian; Lianxun Gao; Guangshan Zhu
Highly porous and robust ionic MOFs with nia topology constructed by connecting an octahedral ligand and a trigonal prismatic metal cluster
Chem.Commun., 2012, 48, 6010
7108891 CIFC36 H68 Cl16 Fe6 N12 O23P -6 2 c13.3201; 13.3201; 24.738
90; 90; 120
3801.1Prodius, Denis; Macaev, Fliur; Stingaci, Eugenia; Pogrebnoi, Vsevolod; Mereacre, Valeriu; Novitchi, Ghenadie; Kostakis, George E.; Anson, Christopher E.; Powell, Annie K.
Catalytic "triangles": binding of iron in task-specific ionic liquids
Chemical Communications (Cambridge, United Kingdom), 2013, 49, 1915-1917
7109533 CIFC66 H0 N0 O16 Yb3P -6 2 c19.848; 19.848; 27.853
90; 90; 120
9502.5Yabing He; Hiroyasu Furukawa; Chuande Wu; Michael O'Keeffe; Rajamani Krishna; Banglin Chen
Low-energy regeneration and high productivity in a lanthanide-hexacarboxylate framework for high-pressure CO2-CH4-H2 separation
Chem.Commun., 2013, 49, 6773
7110645 CIFC40 H66 N11 Ru S6P -6 2 c13.494; 13.494; 16.834
90; 90; 120
2654.6Maiti, Rabindranath; Shang, Maoyu; Graham Lappin, A.
A ruthenium(IV) complex with six sulfur donor atoms
Chemical Communications, 1999, 2349
7115933 CIFC25 H21 B2 F8 N6 NiP -6 2 c18.058; 18.058; 14.612
90; 90; 120
4126.5Peili Zhang; Mei Wang; Yong Yang; Dehua Zheng; Kai Han; Licheng Sun
Highly efficient molecular nickel catalysts for electrochemical hydrogen production from neutral water
Chem.Commun., 2014, 50, 14153
7122380 CIFC29 H18 Co3 N O16P -6 2 c14.5594; 14.5594; 13.7247
90; 90; 120
2519.54Zhang, Qing-Qing; Liu, Xiao-Fei; Ma, Lin; Wei, Yong-Sheng; Wang, Zhao-Yang; Xu, Hong; Zang, Shuang-Quan
Remoulding a MOF's pores by auxiliary ligand introduction for stability improvement and highly selective CO<sub>2</sub>-capture.
Chemical communications (Cambridge, England), 2018, 54, 12029-12032
7122381 CIFC50.01 H28 Co3 N4 O13P -6 2 c14.3406; 14.3406; 14.1626
90; 90; 120
2522.37Zhang, Qing-Qing; Liu, Xiao-Fei; Ma, Lin; Wei, Yong-Sheng; Wang, Zhao-Yang; Xu, Hong; Zang, Shuang-Quan
Remoulding a MOF's pores by auxiliary ligand introduction for stability improvement and highly selective CO<sub>2</sub>-capture.
Chemical communications (Cambridge, England), 2018, 54, 12029-12032
7122382 CIFC50.01 H28 Co3 N4 O13P -6 2 c14.339; 14.339; 14.359
90; 90; 120
2556.78Zhang, Qing-Qing; Liu, Xiao-Fei; Ma, Lin; Wei, Yong-Sheng; Wang, Zhao-Yang; Xu, Hong; Zang, Shuang-Quan
Remoulding a MOF's pores by auxiliary ligand introduction for stability improvement and highly selective CO<sub>2</sub>-capture.
Chemical communications (Cambridge, England), 2018, 54, 12029-12032
7130694 CIFC60 H78 F41 N12 P7 Pd3P -6 2 c16.6805; 16.6805; 24.152
90; 90; 120
5819.7Abe, Tsukasa; Horiuchi, Shinnosuke; Hiraoka, Shuichi
Kinetically controlled narcissistic self-sorting of Pd(ii)-linked self-assemblies from structurally similar tritopic ligands
Chemical Communications, 2022
7200275 CIFC22 H29 N5 Ni O9P -6 2 c16.6361; 16.6361; 27.868
90; 90; 120
6679.4Gao, Chaoying; Liu, Shuxia; Xie, Linhua; Sun, Chunyan; Cao, Jianfang; Ren, Yuanhang; Feng, Dan; Su, Zhongming
Rational design microporous pillared-layer frameworks: syntheses, structures and gas sorption properties
CrystEngComm, 2009, 11, 177
7209370 CIFAg2 I10 Tl6P -6 2 c10.48; 10.48; 13.415
90; 90; 120
1275.98Stoeger, W.; Rabenau, A.
Tl6 Ag2 I10, ein Polyiodid mit Ag2-Paaren. Darstellung, Eigenschaften und Kristallstruktur
Zeitschrift fuer Naturforschung, Teil B. Anorganische Chemie, Organische Chemie (33,1978-41,1986), 1978, 33, 740-744
7209409 CIFAu2 I10 Tl6P -6 2 c10.569; 10.569; 13.431
90; 90; 120
1299.29Stoeger, W.; Rabenau, A.
Darstellung, Eigenschaften und Kristallstruktur von Tl6 Au2 I10
Zeitschrift fuer Naturforschung, Teil B. Anorganische Chemie, Organische Chemie (33,1978-41,1986), 1979, 34, 685-692
7212776 CIFH150 K12 O239 P6 Rb6 V8 W39P -6 2 c22.9885; 22.9885; 21.3679
90; 90; 120
9779.4Assran, Awatef S.; Izarova, Natalya V.; Kortz, Ulrich
Mixed-valent vanadium substituted polyoxometalates: the wheel shaped [Rb3⊂{VVVIV3O7(H2O)6}2{H6P6W39O147(H2O)3}]15−
CrystEngComm, 2010, 12, 2684
7221229 CIFLi2 SbP -6 2 c7.946; 7.946; 6.527
90; 90; 120
356.896Mueller, W.
Darstellung und Struktur der Phase Li2 Sb
Zeitschrift fuer Naturforschung, Teil B. Anorganische Chemie, Organische Chemie (2,1947-32,1977), 1977, 32, 357-359
7222598 CIFPt Sc SnP -6 2 c7.3837; 7.3837; 7.2947
90; 90; 120
344.418Mishra, R.; Poettgen, R.; Mosel, B.D.; Hoffmann, R.D.; Trill, H.; Piotrowski, H.; Zumdick, M.F.
The stannides RE Rh Sn (RE= Ho-Yb) and Sc T Sn (T= Pd, Pt) - structure refinements and 119Sn Moessbauer spectroscopy
Zeitschrift fuer Naturforschung, Teil B. Anorganische Chemie, Organische Chemie (42,1987-), 2001, 56, 589-597
7236550 CIFC18 H21 N15P -6 2 c11.3535; 11.3535; 11.701
90; 90; 120
1306.21Wang, Hailong; Wu, Hui; Kan, Jinglan; Chang, Ganggang; Yao, Zizhu; Li, Bin; Zhou, Wei; Xiang, Shengchang; Cong-Gui Zhao, John; Chen, Banglin
A microporous hydrogen-bonded organic framework with amine sites for selective recognition of small molecules
Journal of Materials Chemistry A, 2017, 5, 8292
7236667 CIFC36 H23 Cl3 Cu1.5 N6 O16 Sc3P -6 2 c17.993; 17.993; 24.7387
90; 90; 120
6936.1Marshall, Ross J.; Lennon, Ciaran T.; Tao, Andi; Senn, Hans M.; Wilson, Claire; Fairen-Jimenez, David; Forgan, Ross S.
Controlling interpenetration through linker conformation in the modulated synthesis of Sc metal‒organic frameworks
Journal of Materials Chemistry A, 2018, 6, 1181
7241794 CIFC58 H38 N O16 Sc3P -6 2 c31.808; 31.808; 16.9754
90; 90; 120
14873.8Prasad, Ram R. R.; Pleass, Charlotte; Rigg, Amber L.; Cordes, David B.; Lozinska, Magdalena M.; Georgieva, Veselina M.; Hoffmann, Frank; Slawin, Alexandra M. Z.; Wright, Paul A.
Isoreticular chemistry of scandium analogues of the multicomponent metal‒organic framework MIL-142
CrystEngComm, 2021, 23, 804-812
7242864 CIFC108 H66 Cl4 Co14 N30 O25 S12P -6 2 c25.8926; 25.8926; 18.9542
90; 90; 120
11004.9Yu, Yanan; Wang, Zhao; Li, Ziping; Hang, Xinxin; Bi, Yanfeng
Assembly of {Co14} nanoclusters from adenine-modified Co4-thiacalix[4]arene units
CrystEngComm, 2021, 23, 4382-4388
7245153 CIFC9 H12 Co K N5 O3P -6 2 c10.473; 10.473; 7.2162
90; 90; 120
685.46Tsunashima, Ryo; Fujikawa, Naomi; Shiga, Misaki; Miyagawa, Sayu; Ohno, Shiori; Masuya-Suzuki, Atsuko; Takahashi, Kiyonori; Nakamura, Takayoshi; Akutagawa, Tomoyuki; Nishihara, Sadafumi
Slider-crank Mechanism in a Molecular Crystal: Conversion of Linear Thermal Expansion of Lattice to Circular Rotation of Coordination Chain
CrystEngComm, 2022
7245155 CIFC9 H12 Co K N5 O3P -6 2 c10.3782; 10.3782; 7.153
90; 90; 120
667.21Tsunashima, Ryo; Fujikawa, Naomi; Shiga, Misaki; Miyagawa, Sayu; Ohno, Shiori; Masuya-Suzuki, Atsuko; Takahashi, Kiyonori; Nakamura, Takayoshi; Akutagawa, Tomoyuki; Nishihara, Sadafumi
Slider-crank Mechanism in a Molecular Crystal: Conversion of Linear Thermal Expansion of Lattice to Circular Rotation of Coordination Chain
CrystEngComm, 2022
7245156 CIFC9 H12 Co K N5 O3P -6 2 c10.5556; 10.5556; 7.2239
90; 90; 120
697.06Tsunashima, Ryo; Fujikawa, Naomi; Shiga, Misaki; Miyagawa, Sayu; Ohno, Shiori; Masuya-Suzuki, Atsuko; Takahashi, Kiyonori; Nakamura, Takayoshi; Akutagawa, Tomoyuki; Nishihara, Sadafumi
Slider-crank Mechanism in a Molecular Crystal: Conversion of Linear Thermal Expansion of Lattice to Circular Rotation of Coordination Chain
CrystEngComm, 2022
7245157 CIFC9 H12 Co K N5 O3P -6 2 c10.453; 10.453; 7.1875
90; 90; 120
680.13Tsunashima, Ryo; Fujikawa, Naomi; Shiga, Misaki; Miyagawa, Sayu; Ohno, Shiori; Masuya-Suzuki, Atsuko; Takahashi, Kiyonori; Nakamura, Takayoshi; Akutagawa, Tomoyuki; Nishihara, Sadafumi
Slider-crank Mechanism in a Molecular Crystal: Conversion of Linear Thermal Expansion of Lattice to Circular Rotation of Coordination Chain
CrystEngComm, 2022
7245158 CIFC9 H12 Co K N5 O3P -6 2 c10.3499; 10.3499; 7.1351
90; 90; 120
661.92Tsunashima, Ryo; Fujikawa, Naomi; Shiga, Misaki; Miyagawa, Sayu; Ohno, Shiori; Masuya-Suzuki, Atsuko; Takahashi, Kiyonori; Nakamura, Takayoshi; Akutagawa, Tomoyuki; Nishihara, Sadafumi
Slider-crank Mechanism in a Molecular Crystal: Conversion of Linear Thermal Expansion of Lattice to Circular Rotation of Coordination Chain
CrystEngComm, 2022
7245159 CIFC9 H12 Co K N5 O3P -6 2 c10.411; 10.411; 7.1669
90; 90; 120
672.74Tsunashima, Ryo; Fujikawa, Naomi; Shiga, Misaki; Miyagawa, Sayu; Ohno, Shiori; Masuya-Suzuki, Atsuko; Takahashi, Kiyonori; Nakamura, Takayoshi; Akutagawa, Tomoyuki; Nishihara, Sadafumi
Slider-crank Mechanism in a Molecular Crystal: Conversion of Linear Thermal Expansion of Lattice to Circular Rotation of Coordination Chain
CrystEngComm, 2022
7700619 CIFC41 H100 Br3 Cl6 N5 Re12 S14P -6 2 c11.5764; 11.5764; 32.67
90; 90; 120
3791.6Gayfulin, Yakov M.; Brylev, Konstantin A.; Ryzhikov, Maxim R.; Samsonenko, Denis G.; Kitamura, Noboru; Mironov, Yuri V.
Luminescent twelve-nuclear rhenium clusters.
Dalton transactions (Cambridge, England : 2003), 2019, 48, 12522-12530
7717426 CIFC9.5 H6 Mn0.5 N O1.83P -6 2 c13.1365; 13.1365; 17.7462
90; 90; 120
2652.13Li, Yue; Xu, Mingming; Liu, Hongyan; Wang, Xiaokang; Wang, Yutong; Sun, Meng; Fan, Weidong; Sun, Daofeng
Two amino-functionalized metal-organic frameworks with different topologies for C<sub>2</sub>H<sub>2</sub>/C<sub>2</sub>H<sub>4</sub> separation.
Dalton transactions (Cambridge, England : 2003), 2024, 53, 18094-18098
7718374 CIFCs2 H9 N3 O13 S4P -6 2 c8.7339; 8.7339; 12.1915
90; 90; 120
805.39Ji, Yun; Zhang, Huili; Wen, Xin; Chen, Jindong; Yang, Guangsai; Yan, Yuchen; Peng, Guang; Ye, Ning
K2SO4(NH3SO3)2 and Cs2SO4(NH3SO3)3: two deep-UV transparent sulfamate-sulfates with moderate birefringence
Dalton Transactions, 2025, 54, 6596-6602
7718868 CIFCe3 Ga3 Ge2 O10 S3P -6 2 c10.0993; 10.0993; 7.4738
90; 90; 120
660.17Yan, Hong; Fujii, Kotaro; Matsushita, Yoshitaka; Yashima, Masatomo; Yamaura, Kazunari; Tsujimoto, Yoshihiro
Flux crystal growth, structure, and optical properties of non-centrosymmetric oxysulfides Ln<sub>3</sub>Ga<sub>3</sub>Ge<sub>2</sub>S<sub>3</sub>O<sub>10</sub> (Ln = La, Ce, Pr, Nd).
Dalton transactions (Cambridge, England : 2003), 2025, 54, 10433-10440
7718869 CIFGa3 Ge2 O10 Pr3 S3P -6 2 c10.0921; 10.0921; 7.4251
90; 90; 120
654.93Yan, Hong; Fujii, Kotaro; Matsushita, Yoshitaka; Yashima, Masatomo; Yamaura, Kazunari; Tsujimoto, Yoshihiro
Flux crystal growth, structure, and optical properties of non-centrosymmetric oxysulfides Ln<sub>3</sub>Ga<sub>3</sub>Ge<sub>2</sub>S<sub>3</sub>O<sub>10</sub> (Ln = La, Ce, Pr, Nd).
Dalton transactions (Cambridge, England : 2003), 2025, 54, 10433-10440
7718870 CIFGa3 Ge2 La3 O10 S3P -6 2 c10.1701; 10.1701; 7.5198
90; 90; 120
673.58Yan, Hong; Fujii, Kotaro; Matsushita, Yoshitaka; Yashima, Masatomo; Yamaura, Kazunari; Tsujimoto, Yoshihiro
Flux crystal growth, structure, and optical properties of non-centrosymmetric oxysulfides Ln<sub>3</sub>Ga<sub>3</sub>Ge<sub>2</sub>S<sub>3</sub>O<sub>10</sub> (Ln = La, Ce, Pr, Nd).
Dalton transactions (Cambridge, England : 2003), 2025, 54, 10433-10440
7718871 CIFGa3 Ge2 Nd3 O10 S3P -6 2 c10.0682; 10.0682; 7.3802
90; 90; 120
647.89Yan, Hong; Fujii, Kotaro; Matsushita, Yoshitaka; Yashima, Masatomo; Yamaura, Kazunari; Tsujimoto, Yoshihiro
Flux crystal growth, structure, and optical properties of non-centrosymmetric oxysulfides Ln<sub>3</sub>Ga<sub>3</sub>Ge<sub>2</sub>S<sub>3</sub>O<sub>10</sub> (Ln = La, Ce, Pr, Nd).
Dalton transactions (Cambridge, England : 2003), 2025, 54, 10433-10440
8102958 CIFGa Hf PdP -6 2 c7.1572; 7.1572; 6.8945
90; 90; 120
305.86Demchyna, R.; Prots, Yu.; Burkhardt, U.; Schwarz, U.; Grin, Yu.
Crystal structure of hafnium palladium gallium, HfPdGa
Zeitschrift für Kristallographie - New Crystal Structures, 2006, 221, 427-428

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