Crystallography Open Database

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Searching space group like 'P 1 2/m 1'

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7034478 CIFC6 H20 F8 Fe5 N21 O2P 1 2/m 16.6687; 12.245; 9.0305
90; 110.439; 90
690.99Pimenta, Vanessa; Le, Quang Hoang Hanh; Clark, Lucy; Lhoste, Jérôme; Hémon-Ribaud, Annie; Leblanc, Marc; Grenèche, Jean-Marc; Dujardin, Gilles; Lightfoot, Philip; Maisonneuve, Vincent
New iron tetrazolate frameworks: synthesis, temperature effect, thermal behaviour, Mössbauer and magnetic studies.
Dalton transactions (Cambridge, England : 2003), 2015, 44, 7951-7959
7056615 CIFC12 H10.4 Fe N8 O1.2 PtP 1 2/m 17.2727; 7.4681; 7.4416
90; 95.939; 90
402.008Polyzou, Christina D.; Lalioti, Nikolia; Psycharis, Vassilis; Tangoulis, Vassilis
Guest Induced Hysteretic Tristability in 3D Pillared Hofmann-type Microporous Metal-Organic Framework
New J. Chem., 2017
7056616 CIFC12 H10.4 Fe N8 O1.2 PdP 1 2/m 17.28; 7.47; 7.4387
90; 95.88; 90
402.4Polyzou, Christina D.; Lalioti, Nikolia; Psycharis, Vassilis; Tangoulis, Vassilis
Guest Induced Hysteretic Tristability in 3D Pillared Hofmann-type Microporous Metal-Organic Framework
New J. Chem., 2017
7114172 CIFC6 H20 Co Fe N4 O12P 1 2/m 16.971; 7.467; 9.267
90; 100.377; 90
474.5Jiang, Jianfeng; Koch, Stephen A.
Two-dimensional materials based on trans-[FeII(CN)4(CO)2]2??? building blocks; first structural evidence for a hydrated metal carbonyl ligation
Chemical Communications, 2002, 1724
7119176 CIFMn1.5 N O13 V4P 1 2/m 18.2011; 3.5207; 9.9129
90; 110.987; 90
267.234Martin K. Dufficy; Lan Luo; Peter S. Fedkiw; Paul A. Maggard
Vacancy-induced manganese vanadates and their potential application to Li-ion batteries
Chem.Commun., 2016, 52, 7509
7123110 CIFC24 H14 O22 S4 Zn4P 1 2/m 114.3588; 15.763; 15.6688
90; 103.497; 90
3448.5Wu, Xiao-Qin; Liu, Yan; Feng, Pei-qi; Wei, Xuehong; Qiu, Xiao-Hang; Ma, Jian-Gong
Design of the Zn-MOF Biosensor via a Ligand “Lock” for the Recognition and Distinction of S-containing Amino Acids
Chemical Communications, 2019
7206025 CIFC9 H5.5 N1.5 O2 Zn0.5P 1 2/m 110.07; 11.383; 13.936
90; 101.955; 90
1563Yang, Ming; Jiang, Feilong; Chen, Qihui; Zhou, Youfu; Feng, Rui; Xiong, Kecai; Hong, Maochun
Solvent and temperature influence structural variation from nonporous 2D →3D parallel polycatenation to 3D microporous metal‒organic framework
CrystEngComm, 2011, 13, 3971
7209468 CIFB Mn2 O5 SrP 1 2/m 111.075; 3.1104; 5.4293
90; 95.1; 90
186.286Utzolino, A.; Bluhm, K.
Neue Einsichten zur Stabilisierung des Hulsit-Strukturtyps am Beispiel von Mn(II)2 Mn(III) (B O3) O2 und Mn(II) Sr Mn(III) (B O3) O2
Zeitschrift fuer Naturforschung, Teil B. Anorganische Chemie, Organische Chemie (42,1987-), 1996, 51, 1433-1438
7221163 CIFLi SnP 1 2/m 15.17; 3.18; 7.74
90; 104.5; 90
123.197Mueller, W.; Schaefer, H.
Die Kristallstruktur der Phase Li Sn
Zeitschrift fuer Naturforschung, Teil B. Anorganische Chemie, Organische Chemie (2,1947-32,1977), 1973, 28, 246-248
7234570 CIFC10 H8 Cu2 O11P 1 2/m 17.8682; 10.5629; 11.607
90; 106.552; 90
924.7Zhang, Jun; Ma, Xiaofan; Kong, Weili; Lu, Guodong; Xuan, Xiaopeng
Cooperative proton transportation based on the reversible single crystal‒single crystal transformation in a highly water-stable Cu-MOF with its facile and scalable preparation
CrystEngComm, 2019
7237163 CIFC96 H48 Cl2 Cu4.5 N40 O0.5P 1 2/m 116.9552; 19.4089; 18.5986
90; 99.771; 90
6031.7Wang, Zheng; Zhang, Jian-Hua; Jiang, Ji-Jun; Wang, Hai-Ping; Wei, Zhang-Wen; Zhu, Xunjin; Pan, Mei; Su, Cheng-Yong
A stable metal cluster-metalloporphyrin MOF with high capacity for cationic dye removal
Journal of Materials Chemistry A, 2018, 6, 17698
7239987 CIFC6 H4 Br2 Co N2P 1 2/m 112.4692; 3.76053; 9.62324
90; 89.87; 90
451.24Heine, Miriam; Fink, Lothar; Schmidt, Martin U.
4-Cyanopyridine complexes [MX2(4-CNpy)x]n (with X = Cl, Br and x = 1, 2): crystal structures, thermal properties and a comparison with [MX2(3-CNpy)x]n complexes
CrystEngComm, 2020
7240451 CIFH13 N9 O10 Pd RuP 1 2/m 17.851; 7.792; 12.456
90; 105.148; 90
735.5Kostin, Gennadiy; Filatov, Evgeny; Pishchur, Denis P.; Kuratieva, Natalia; Korenev, Sergey
Phase transformations in a double complex salt of ruthenium nitrosyl anion with tetraamine-palladium cation
CrystEngComm, 2020
7241021 CIFC52 H32 Au2 Co N8 S10P 1 2/m 19.6303; 12.2272; 17.1845
90; 96.342; 90
2011.12Bechu, Damien; Petre, Alexandru Mihai; Hosseini, Mir Wais; Baudron, Stéphane
Heterometallic coordination polymers based on homo- and heteroleptic Au(III) dithiolene complexes
CrystEngComm, 2020
7704815 CIFC32 H16 Ag N4 O10 Ru2P 1 2/m 112.455; 19.023; 16.766
90; 97.049; 90
3942Gao, Wen-Yang; Van Trieste Iii, Gerard Pierre; Powers, David C.
Synthesis of atomically precise single-crystalline Ru<sub>2</sub>-based coordination polymers.
Dalton transactions (Cambridge, England : 2003), 2020, 49, 16077-16081
7707587 CIFC50 H42 Br2 Cu6 N2 O34 Ru12P 1 2/m 113.7124; 19.7578; 17.3324
90; 111.328; 90
4374.2Cesari, Cristiana; Bortoluzzi, Marco; Femoni, Cristina; Iapalucci, Maria Carmela; Zacchini, Stefano
One-pot atmospheric pressure synthesis of [H<sub>3</sub>Ru<sub>4</sub>(CO)<sub>12</sub>]<sup/>.
Dalton transactions (Cambridge, England : 2003), 2021, 50, 9610-9622
7707645 CIFAs2 Ba In2P 1 2/m 110.2746; 4.3005; 13.3317
90; 95.569; 90
586.29Ogunbunmi, Michael O.; Baranets, Sviatoslav; Childs, Amanda B.; Bobev, Svilen
The Zintl phases <i>A</i>In<sub>2</sub>As<sub>2</sub> (A = Ca, Sr, Ba): new topological insulators and thermoelectric material candidates.
Dalton transactions (Cambridge, England : 2003), 2021, 50, 9173-9184
7711843 CIFC10 H16 Co O14P 1 2/m 16.3747; 9.9302; 6.4394
90; 114.467; 90
371.02Shao, Dong; Zhou, Yue; Yang, Xiaodong; Yue, Jing; Ming, Shujun; Wei, Xiao-Qin; Tian, Zhengfang
Supramolecular encapsulation of hexaaquacobalt(II) cations in a hydrogen-bonded framework for slow magnetic relaxation and high proton conduction.
Dalton transactions (Cambridge, England : 2003), 2022
7711844 CIFC10 H16 Co O14P 1 2/m 16.4912; 9.9169; 6.538
90; 115.401; 90
380.18Shao, Dong; Zhou, Yue; Yang, Xiaodong; Yue, Jing; Ming, Shujun; Wei, Xiao-Qin; Tian, Zhengfang
Supramolecular encapsulation of hexaaquacobalt(II) cations in a hydrogen-bonded framework for slow magnetic relaxation and high proton conduction.
Dalton transactions (Cambridge, England : 2003), 2022
7711845 CIFC10 H16 Co O14P 1 2/m 16.523; 9.909; 6.641
90; 115.98; 90
385.9Shao, Dong; Zhou, Yue; Yang, Xiaodong; Yue, Jing; Ming, Shujun; Wei, Xiao-Qin; Tian, Zhengfang
Supramolecular encapsulation of hexaaquacobalt(II) cations in a hydrogen-bonded framework for slow magnetic relaxation and high proton conduction.
Dalton transactions (Cambridge, England : 2003), 2022
8103424 CIFAu CdP 1 2/m 17.438; 3.097; 4.899
90; 105.47; 90
108.762Alasafi, K.M.; Schubert, K.
Crystal structure of Au1.1 Cd.9 (r)
Zeitschrift fuer Kristallographie, Kristallgeometrie, Kristallphysik, Kristallchemie (145,1977-148,1979), 1978, 148, 179-191
8107665 CIFCo H4 O14 V4.4P 1 2/m 18.1091; 3.5128; 9.759
90; 111.553; 90
258.55Wu-Hua, Chen; Ran, Chen; Jin-Xiao, Mi; Hua-Feng, Wang; Jia-Yu, Song
The crystal structure of a cobalt-vanadium-oxido hydrate
Zeitschrift für Kristallographie - New Crystal Structures, 2023, 238, 1079-1080
9000271 CIFMg2 O4 SiP 1 2/m 110.11; 5.77; 4.7
90; 90; 90
274.173Baur, W. H.
Computer-simulated crystal structures of observed and hypothetical Mg2SiO4 polymorphs of low and high density Model I
American Mineralogist, 1972, 57, 709-731
9000486 CIFB2 Fe2.63 Mg1.12 O10 Sn0.2P 1 2/m 110.695; 3.102; 5.432
90; 94.2; 90
179.727Konnert, J. A.; Appleman, D. E.; Clark, J. R.; Finger, L. W.; Kato, T.; Miura, Y.
Crystal structure and cation distribution of hulsite, a tin-iron borate
American Mineralogist, 1976, 61, 116-122
9001165 CIFH3.16 Mn6 O15.16P 1 2/m 19.764; 2.8416; 9.551
90; 94.06; 90
264.331Post, J. E.; Bish, D. L.
Rietveld refinement of the todorokite structure Sample: South Africa Ka
American Mineralogist, 1988, 73, 861-869
9001166 CIFH4.16 Mn6 O16.16P 1 2/m 19.763; 2.8454; 9.559
90; 94.16; 90
264.846Post, J. E.; Bish, D. L.
Rietveld refinement of the todorokite structure Sample: South Africa Kb
American Mineralogist, 1988, 73, 861-869
9001167 CIFMn O2P 1 2/m 19.789; 2.834; 9.551
90; 93.7; 90
264.412Post, J. E.; Bish, D. L.
Rietveld refinement of the todorokite structure Sample: Cuba
American Mineralogist, 1988, 73, 861-869
9002866 CIFH8.16 Mg0.47 Mn6 O16.9P 1 2/m 19.769; 2.8512; 9.56
90; 94.47; 90
265.468Post, J. E.; Heaney, P. J.; Hanson, J. C.
Synchrotron X-ray diffraction study of the structure and dehydration behavior of todorokite
American Mineralogist, 2003, 88, 142-150
9003557 CIFAg Au Te2P 1 2/m 15.124; 4.419; 7.437
90; 89.96; 90
168.396Bindi, L.; Cipriani, C.
Ordered distribution of Au and Ag in the crystal structure of muthmannite, AuAgTe2, a rare telluride from Sacarimb, Western Romania
American Mineralogist, 2004, 89, 1505-1509
9005640 CIFAl1.3 B2 Fe0.7 Mg3.7 O10 Sn0.3P 1 2/m 15.3444; 3.03; 10.506
90; 94.46; 90
169.614Pertsev N N; Schreyer W; Armbruster T; Bernhardt H J; Medenbach O
Alumino-magnesiohulsite, a new member of the hulsite group, in kotoite marble from east of Verkhoyansk, Sakha-Yakutia, Russia Locality: east of Verkhoyansk, Sakha-Yakutia, Russia
European Journal of Mineralogy, 2004, 16, 151-161
9008074 CIFAl26 Mg O40P 1 2/m 19.31; 5.64; 12.1
90; 100.77; 90
624.16Jagodzinski, H.
Die bestimmung einer bei der entmischung Al2O3-ubersattigter Mg-Al-Spinelle auftretenden zwischenstruktur
Zeitschrift fur Kristallographie, 1957, 109, 388-409
9012682 CIFBa1.44 Ca0.76 F2 Fe6 H8 K0.8 Mg0.5 Mn1.5 Na Nb0.2 O38 Si8 Ti3.6 Zr0.2P 1 2/m 15.35; 6.909; 20.96
90; 99.83; 90
763.373Rastsvetaeva, R. K.; Chukanov, N. V.; Rozenberg, K.
A crystal structure of jinshajiangite from the Norra Karr complex (Sweden)
Crystallography Reports, 2008, 53, 553-556

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