Crystallography Open Database

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1549647 CIFC140 H132 Cl6 Dy10 N32 O52 P4R 3 2 :H26.7135; 26.7135; 71.325
90; 90; 120
44079Tian, Haiquan; Su, Jing-Bu; Bao, Song-Song; Kurmoo, Mohamedally; Huang, Xin-Da; Zhang, Yi-Quan; Zheng, Li-Min
Reversible ON-OFF switching of single-molecule-magnetism associated with single-crystal-to-single-crystal structural transformation of a decanuclear dysprosium phosphonate.
Chemical science, 2018, 9, 6424-6433
1551321 CIFC216 H237 N35R 3 2 :H20.792; 20.792; 45.156
90; 90; 120
16906Marc A. Little; Michael E. Briggs; James T. A. Jones; Marc Schmidtmann; Tom Hasell; Samantha Y. Chong; Kim E. Jelfs; Linjiang Chen; Andrew I. Cooper
Trapping virtual pores by crystal retro-engineering
Nature Chemistry, 2015, 7, 153-159
1551322 CIFC216 H237 N35R 3 2 :H20.804; 20.804; 45.126
90; 90; 120
16914Marc A. Little; Michael E. Briggs; James T. A. Jones; Marc Schmidtmann; Tom Hasell; Samantha Y. Chong; Kim E. Jelfs; Linjiang Chen; Andrew I. Cooper
Trapping virtual pores by crystal retro-engineering
Nature Chemistry, 2015, 7, 153-159
1551323 CIFC216 H237 N35R 3 2 :H20.4108; 20.4108; 44.6718
90; 90; 120
16117Marc A. Little; Michael E. Briggs; James T. A. Jones; Marc Schmidtmann; Tom Hasell; Samantha Y. Chong; Kim E. Jelfs; Linjiang Chen; Andrew I. Cooper
Trapping virtual pores by crystal retro-engineering
Nature Chemistry, 2015, 7, 153-159
1551324 CIFC216 H237 N35R 3 2 :H20.6365; 20.6365; 44.899
90; 90; 120
16559Marc A. Little; Michael E. Briggs; James T. A. Jones; Marc Schmidtmann; Tom Hasell; Samantha Y. Chong; Kim E. Jelfs; Linjiang Chen; Andrew I. Cooper
Trapping virtual pores by crystal retro-engineering
Nature Chemistry, 2015, 7, 153-159
1551325 CIFC218.02 H246.5 Cl1.5 N35 O1.5R 3 2 :H20.718; 20.718; 44.992
90; 90; 120
16725Marc A. Little; Michael E. Briggs; James T. A. Jones; Marc Schmidtmann; Tom Hasell; Samantha Y. Chong; Kim E. Jelfs; Linjiang Chen; Andrew I. Cooper
Trapping virtual pores by crystal retro-engineering
Nature Chemistry, 2015, 7, 153-159
1551326 CIFC216 H237 N35R 3 2 :H20.6071; 20.6071; 44.949
90; 90; 120
16530.4Marc A. Little; Michael E. Briggs; James T. A. Jones; Marc Schmidtmann; Tom Hasell; Samantha Y. Chong; Kim E. Jelfs; Linjiang Chen; Andrew I. Cooper
Trapping virtual pores by crystal retro-engineering
Nature Chemistry, 2015, 7, 153-159
1551327 CIFC226 H268 Cl6 N35 O8R 3 2 :H20.5397; 20.5397; 44.747
90; 90; 120
16348.7Marc A. Little; Michael E. Briggs; James T. A. Jones; Marc Schmidtmann; Tom Hasell; Samantha Y. Chong; Kim E. Jelfs; Linjiang Chen; Andrew I. Cooper
Trapping virtual pores by crystal retro-engineering
Nature Chemistry, 2015, 7, 153-159
1557094 CIFC36 H90 Gd K N5 O6 Si6R 3 2 :H18.564; 18.564; 18.05
90; 90; 120
5387Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557666 CIFC61 H66 F3 N8 O15 S Tb Zn2R 3 2 :H11.8682; 11.8682; 38.4392
90; 90; 120
4688.9Konieczny, Piotr; Pel̷ka, Robert; Masuda, Yuka; Sakata, Shiomi; Kayahara, Saori; Irie, Natsumi; Kajiwara, Takashi; Baran, Stanisl̷aw
Anisotropy of Spin‒Lattice Relaxations in Mononuclear Tb3+ Single-Molecule Magnets
The Journal of Physical Chemistry C, 2020
1558396 CIFC12 H38.5 Cl3.5 Ir N6 O4R 3 2 :H8.043; 8.043; 31.821
90; 90; 120
1782.7Flensburg, Claus; Simonsen, Kim; Skov, Lars Kobberoe
Preparation, Isolation and Characterization of fac-[Ir(tacn)(H2O)3](CF3SO3)3, fac-[Ir(tacn)(CF3SO3)3] and [Ir(tacn)2]Cl3.1/2HCl.4H2O. Crystal Structure of [Ir(tacn)2]Cl3.1/2HCl.4H2O (tacn = 1,4,7-Triazacyclononane)
Acta Chemica Scandinavica, 1994, 48, 209-214
1559066 CIFC19 H51 Cr2 F9 N6 O15 S3R 3 2 :H9.031; 9.031; 41.079
90; 90; 120
2901.5Andersen, Peter; Larsen, Sine; Pretzmann, Ulla
Hydrolytic Properties of the Triaqua[N,N',N''-trimethyl-1,1,1-tris(aminomethyl)ethane]chromium(III) Ion, [Cr(Me3-tame)(H2O)3]3+. Crystal Structure of [(Me3-tame)Cr(H3O2)3Cr(Me3-tame)](CF3SO3)3 with Three Short Hydrogen Bonds Connecting the Two Mononuclear Units
Acta Chemica Scandinavica, 1993, 47, 1147-1153
1561508 CIFC9 H40.5 N7.5 Na O1.5 Se14 Sn6R 3 2 :H13.8647; 13.8647; 18.9623
90; 90; 120
3156.8Du, Cheng-Feng; Li, Jian-Rong; Shen, Nan-Nan; Huang, Xiao-Ying
Ionothermal synthesis and electrochemical properties of a selenidostannate containing the mixed cations of Na+ and enH+
Journal of Solid State Chemistry, 2016, 238, 203-209
1561592 CIFCa Mn0.5 O12 P3 Zr1.5R 3 2 :H8.785; 8.785; 22.6496
90; 90; 120
1513.82Orlova, Maria; Perfler, Lukas; Tribus, Martina; Salnikov, Petr; Glorieux, Benoit; Orlova, Albina
Temperature induced phase transition of CaMn0.5Zr1.5(PO4)3 phosphate
Journal of Solid State Chemistry, 2016, 235, 36-42
1569629 CIFAl0.28 B4 Bi0.07 Fe2.72 O12 Sm0.93R 3 2 :H9.5443; 9.5443; 7.5603
90; 90; 120
596.428Smirnova, Ekaterina S.; Alekseeva, Olga A.; Artemov, Vladimir V.; Sorokin, Timofei A.; Khmelenin, Dmitry N.; Sidorova, Ekaterina V.; Frolov, Kirill V.; Gudim, Irina A.
Crystal Structure of Bismuth-Containing Samarium Iron–Aluminium Borates Sm1−xBixFe3−yAly(BO3)4 (x = 0.05–0.07, y = 0–0.28) in the Temperature Range of 25–500 K
Crystals, 2023, 13, 1128
1569630 CIFAl0.28 B4 Bi0.07 Fe2.72 O12 Sm0.93R 3 2 :H9.543; 9.543; 7.5634
90; 90; 120
596.51Smirnova, Ekaterina S.; Alekseeva, Olga A.; Artemov, Vladimir V.; Sorokin, Timofei A.; Khmelenin, Dmitry N.; Sidorova, Ekaterina V.; Frolov, Kirill V.; Gudim, Irina A.
Crystal Structure of Bismuth-Containing Samarium Iron–Aluminium Borates Sm1−xBixFe3−yAly(BO3)4 (x = 0.05–0.07, y = 0–0.28) in the Temperature Range of 25–500 K
Crystals, 2023, 13, 1128
1569631 CIFAl0.25 B4 Bi0.05 Fe2.75 O12 Sm0.95R 3 2 :H9.5435; 9.5435; 7.5628
90; 90; 120
596.525Smirnova, Ekaterina S.; Alekseeva, Olga A.; Artemov, Vladimir V.; Sorokin, Timofei A.; Khmelenin, Dmitry N.; Sidorova, Ekaterina V.; Frolov, Kirill V.; Gudim, Irina A.
Crystal Structure of Bismuth-Containing Samarium Iron–Aluminium Borates Sm1−xBixFe3−yAly(BO3)4 (x = 0.05–0.07, y = 0–0.28) in the Temperature Range of 25–500 K
Crystals, 2023, 13, 1128
1569632 CIFAl0.17 B4 Bi0.05 Fe2.83 O12 Sm0.95R 3 2 :H9.5534; 9.5534; 7.5767
90; 90; 120
598.862Smirnova, Ekaterina S.; Alekseeva, Olga A.; Artemov, Vladimir V.; Sorokin, Timofei A.; Khmelenin, Dmitry N.; Sidorova, Ekaterina V.; Frolov, Kirill V.; Gudim, Irina A.
Crystal Structure of Bismuth-Containing Samarium Iron–Aluminium Borates Sm1−xBixFe3−yAly(BO3)4 (x = 0.05–0.07, y = 0–0.28) in the Temperature Range of 25–500 K
Crystals, 2023, 13, 1128
1569633 CIFAl0.28 B4 Bi0.07 Fe2.72 O12 Sm0.93R 3 2 :H9.5329; 9.5329; 7.5553
90; 90; 120
594.61Smirnova, Ekaterina S.; Alekseeva, Olga A.; Artemov, Vladimir V.; Sorokin, Timofei A.; Khmelenin, Dmitry N.; Sidorova, Ekaterina V.; Frolov, Kirill V.; Gudim, Irina A.
Crystal Structure of Bismuth-Containing Samarium Iron–Aluminium Borates Sm1−xBixFe3−yAly(BO3)4 (x = 0.05–0.07, y = 0–0.28) in the Temperature Range of 25–500 K
Crystals, 2023, 13, 1128
1569634 CIFB4 Bi0.05 Fe3 O12 Sm0.95R 3 2 :H9.565; 9.565; 7.5869
90; 90; 120
601.125Smirnova, Ekaterina S.; Alekseeva, Olga A.; Artemov, Vladimir V.; Sorokin, Timofei A.; Khmelenin, Dmitry N.; Sidorova, Ekaterina V.; Frolov, Kirill V.; Gudim, Irina A.
Crystal Structure of Bismuth-Containing Samarium Iron–Aluminium Borates Sm1−xBixFe3−yAly(BO3)4 (x = 0.05–0.07, y = 0–0.28) in the Temperature Range of 25–500 K
Crystals, 2023, 13, 1128

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