Crystallography Open Database

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1550456 CIFC24 H38 N2 O9P 1 21 16.07189; 32.9414; 7.1383
90; 114.168; 90
1302.63Babor, Martin; Nievergelt, Philipp P.; Čejka, Jan; Zvoníček, Vít; Spingler, Bernhard
Microbatch under-oil salt screening of organic cations: single-crystal growth of active pharmaceutical ingredients
IUCrJ, 2019, 6, 145-151
1550457 CIFC10 H16 N2 O4P 1 21 16.0401; 29.3553; 7.3828
90; 112.806; 90
1206.7Babor, Martin; Nievergelt, Philipp P.; Čejka, Jan; Zvoníček, Vít; Spingler, Bernhard
Microbatch under-oil salt screening of organic cations: single-crystal growth of active pharmaceutical ingredients
IUCrJ, 2019, 6, 145-151
1550520 CIF
Paper
C12 H16 N4 O6P 1 21/c 114.0525; 7.8134; 12.8242
90; 91.848; 90
1407.34Gryl, Marlena; Rydz, Agnieszka; Wojnarska, Joanna; Krawczuk, Anna; Kozieł, Marcin; Seidler, Tomasz; Ostrowska, Katarzyna; Marzec, Monika; Stadnicka, Katarzyna Marta
Origin of chromic effects and crystal-to-crystal phase transition in the polymorphs of tyraminium violurate
IUCrJ, 2019, 6
1550521 CIF
Paper
C12 H14 N4 O5P 1 21/c 16.8711; 15.119; 11.884
90; 91.858; 90
1233.9Gryl, Marlena; Rydz, Agnieszka; Wojnarska, Joanna; Krawczuk, Anna; Kozieł, Marcin; Seidler, Tomasz; Ostrowska, Katarzyna; Marzec, Monika; Stadnicka, Katarzyna Marta
Origin of chromic effects and crystal-to-crystal phase transition in the polymorphs of tyraminium violurate
IUCrJ, 2019, 6
1550522 CIF
Paper
C12 H14 N4 O5P 1 21/c 113.2706; 7.651; 13.1269
90; 102.097; 90
1303.22Gryl, Marlena; Rydz, Agnieszka; Wojnarska, Joanna; Krawczuk, Anna; Kozieł, Marcin; Seidler, Tomasz; Ostrowska, Katarzyna; Marzec, Monika; Stadnicka, Katarzyna Marta
Origin of chromic effects and crystal-to-crystal phase transition in the polymorphs of tyraminium violurate
IUCrJ, 2019, 6
1551103 CIF
Paper
C8 H19 N O3P 1 21 19.6559; 29.8416; 30.1248
90; 98.54; 90
8584.1Khandavilli, U. B. Rao; Lusi, Matteo; Frawley, Patrick J.
Plasticity in zwitterionic drugs: the bending properties of Pregabalin and Gabapentin and their hydrates
IUCrJ, 2019, 6
1551104 CIFC8 H19 N O3C 1 2 19.566; 7.44; 15.911
90; 101.54; 90
1109.5Khandavilli, U. B. Rao; Lusi, Matteo; Frawley, Patrick J.
Plasticity in zwitterionic drugs: the bending properties of Pregabalin and Gabapentin and their hydrates
IUCrJ, 2019, 6
1551412 CIF
Paper
C16 H36 N8 Ni O13P 21 21 218.949; 15.4457; 19.2674
90; 90; 90
2663.2Christensen, Jeppe; Horton, Peter N.; Bury, Charles S.; Dickerson, Joshua L.; Taberman, Helena; Garman, Elspeth F.; Coles, Simon J.
Radiation damage in small-molecule crystallography: fact not fiction
IUCrJ, 2019, 6
1551854 CIF
Paper
C22 H19 F3 N4 O3 SP 1 21/n 114.5182; 8.2844; 17.8349
90; 93.899; 90
2140.1Bolla, Geetha; Nangia, Ashwini
Supramolecular synthon hierarchy in sulfonamide cocrystals with <i>syn</i>-amides and <i>N</i>-oxides
IUCrJ, 2019, 6
1551855 CIFC23 H21 F3 N4 O3 SP -110.0694; 10.6113; 12.6499
113.451; 100.897; 101.744
1157.9Bolla, Geetha; Nangia, Ashwini
Supramolecular synthon hierarchy in sulfonamide cocrystals with <i>syn</i>-amides and <i>N</i>-oxides
IUCrJ, 2019, 6
1551856 CIFC24 H20 F6 N4 O3 SP -17.4563; 13.01; 13.7231
100.17; 95.715; 104.444
1254.4Bolla, Geetha; Nangia, Ashwini
Supramolecular synthon hierarchy in sulfonamide cocrystals with <i>syn</i>-amides and <i>N</i>-oxides
IUCrJ, 2019, 6
1551857 CIFC23 H21 F3 N4 O4 SP -17.6112; 11.3462; 15.1063
105.897; 102.702; 101.93
1173.4Bolla, Geetha; Nangia, Ashwini
Supramolecular synthon hierarchy in sulfonamide cocrystals with <i>syn</i>-amides and <i>N</i>-oxides
IUCrJ, 2019, 6
1551858 CIFC17 H21 Cl N3 O6.5 SC 1 2/c 123.819; 8.4372; 23.45
90; 123.868; 90
3913Bolla, Geetha; Nangia, Ashwini
Supramolecular synthon hierarchy in sulfonamide cocrystals with <i>syn</i>-amides and <i>N</i>-oxides
IUCrJ, 2019, 6
1551859 CIFC18 H22 Cl N3 O6 SP -18.5442; 11.3615; 12.1409
63.447; 88.724; 75.712
1016.37Bolla, Geetha; Nangia, Ashwini
Supramolecular synthon hierarchy in sulfonamide cocrystals with <i>syn</i>-amides and <i>N</i>-oxides
IUCrJ, 2019, 6
1551860 CIFC17 H22 Cl N3 O7 SP 1 21/n 111.116; 8.447; 21.388
90; 93.12; 90
2005.3Bolla, Geetha; Nangia, Ashwini
Supramolecular synthon hierarchy in sulfonamide cocrystals with <i>syn</i>-amides and <i>N</i>-oxides
IUCrJ, 2019, 6
1551861 CIFC12 H13 Cl N4 O5 S2P 1 21/c 16.8039; 13.5399; 18.8949
90; 113.113; 90
1601Bolla, Geetha; Nangia, Ashwini
Supramolecular synthon hierarchy in sulfonamide cocrystals with <i>syn</i>-amides and <i>N</i>-oxides
IUCrJ, 2019, 6
1551862 CIFC12 H13 Cl N4 O5 S2P n a 2129.442; 7.3421; 7.0867
90; 90; 90
1531.9Bolla, Geetha; Nangia, Ashwini
Supramolecular synthon hierarchy in sulfonamide cocrystals with <i>syn</i>-amides and <i>N</i>-oxides
IUCrJ, 2019, 6
1551863 CIFC17 H26 Cl N5 O6 S2P -18.693; 10.6472; 12.8556
113.672; 98.9; 95.358
1060.61Bolla, Geetha; Nangia, Ashwini
Supramolecular synthon hierarchy in sulfonamide cocrystals with <i>syn</i>-amides and <i>N</i>-oxides
IUCrJ, 2019, 6
1551864 CIFC19 H30 Cl N5 O6 S2P b c a11.8873; 19.315; 21.733
90; 90; 90
4990Bolla, Geetha; Nangia, Ashwini
Supramolecular synthon hierarchy in sulfonamide cocrystals with <i>syn</i>-amides and <i>N</i>-oxides
IUCrJ, 2019, 6
1552087 CIF
Paper
O192 Si96P n m a19.98; 20.43; 13.61
90; 90; 90
5555.48Wang, Bin; Zou, Xiaodong; Smeets, Stef
Automated serial rotation electron diffraction combined with cluster analysis: an efficient multi-crystal workflow for structure determination
IUCrJ, 2019, 6
1552088 CIFO192 Si96P n m a20.58; 19.6; 13.74
90; 90; 90
5542.28Wang, Bin; Zou, Xiaodong; Smeets, Stef
Automated serial rotation electron diffraction combined with cluster analysis: an efficient multi-crystal workflow for structure determination
IUCrJ, 2019, 6
1552089 CIFO192 Si96P n m a20.39; 20.08; 13.57
90; 90; 90
5555.98Wang, Bin; Zou, Xiaodong; Smeets, Stef
Automated serial rotation electron diffraction combined with cluster analysis: an efficient multi-crystal workflow for structure determination
IUCrJ, 2019, 6
1552090 CIFO128 Si64C m c m18.12; 20; 7.7
90; 90; 90
2790.48Wang, Bin; Zou, Xiaodong; Smeets, Stef
Automated serial rotation electron diffraction combined with cluster analysis: an efficient multi-crystal workflow for structure determination
IUCrJ, 2019, 6
1552091 CIFO5280 Si2640I m -3 m55.07; 55.07; 55.07
90; 90; 90
167011Wang, Bin; Zou, Xiaodong; Smeets, Stef
Automated serial rotation electron diffraction combined with cluster analysis: an efficient multi-crystal workflow for structure determination
IUCrJ, 2019, 6
1552092 CIFO2880 Si1440I m -3 m45.07; 45.07; 45.07
90; 90; 90
91550.9Wang, Bin; Zou, Xiaodong; Smeets, Stef
Automated serial rotation electron diffraction combined with cluster analysis: an efficient multi-crystal workflow for structure determination
IUCrJ, 2019, 6
1552093 CIFC192 O96.16 Ti16 Zr4I -4 2 m16.5; 16.5; 29.8
90; 90; 90
8113Wang, Bin; Zou, Xiaodong; Smeets, Stef
Automated serial rotation electron diffraction combined with cluster analysis: an efficient multi-crystal workflow for structure determination
IUCrJ, 2019, 6
1552292 CIF
Paper
C13 H11 N OP c a 2123.354; 5.6449; 7.7373
90; 90; 90
1020Oburn, Shalisa M.; Sinnwell, Michael A.; Ericson, Devin P.; Reinheimer, Eric W.; Proserpio, Davide M.; Groeneman, Ryan H.; MacGillivray, Leonard
Diversifying molecular and topological space via a supramolecular solid-state synthesis: a purely organic mok net sustained by hydrogen bonds
IUCrJ, 2019, 6
1552293 CIFC15 H13 N O2P b c a10.5366; 7.4255; 31.091
90; 90; 90
2432.5Oburn, Shalisa M.; Sinnwell, Michael A.; Ericson, Devin P.; Reinheimer, Eric W.; Proserpio, Davide M.; Groeneman, Ryan H.; MacGillivray, Leonard
Diversifying molecular and topological space via a supramolecular solid-state synthesis: a purely organic mok net sustained by hydrogen bonds
IUCrJ, 2019, 6
1552294 CIFC36 H30 I2 N2 O6P -19.3954; 10.055; 19.911
101.278; 92.285; 111.552
1702.8Oburn, Shalisa M.; Sinnwell, Michael A.; Ericson, Devin P.; Reinheimer, Eric W.; Proserpio, Davide M.; Groeneman, Ryan H.; MacGillivray, Leonard
Diversifying molecular and topological space via a supramolecular solid-state synthesis: a purely organic mok net sustained by hydrogen bonds
IUCrJ, 2019, 6
1552295 CIFC36 H30 I2 N2 O6P 1 21/c 121.7663; 9.8526; 16.269
90; 102.198; 90
3410.2Oburn, Shalisa M.; Sinnwell, Michael A.; Ericson, Devin P.; Reinheimer, Eric W.; Proserpio, Davide M.; Groeneman, Ryan H.; MacGillivray, Leonard
Diversifying molecular and topological space via a supramolecular solid-state synthesis: a purely organic mok net sustained by hydrogen bonds
IUCrJ, 2019, 6
1552296 CIFC26 H22 N2 O2I 1 2/a 119.7244; 12.392; 35.75
90; 99.796; 90
8610.8Oburn, Shalisa M.; Sinnwell, Michael A.; Ericson, Devin P.; Reinheimer, Eric W.; Proserpio, Davide M.; Groeneman, Ryan H.; MacGillivray, Leonard
Diversifying molecular and topological space via a supramolecular solid-state synthesis: a purely organic mok net sustained by hydrogen bonds
IUCrJ, 2019, 6
1552401 CIF
Paper
C18 H26 N2 O2P b c a5.5482; 12.167; 24.556
90; 90; 90
1657.7Wang, Na; Huang, Xin; Chen, Lihang; Yang, Jinyue; Li, Xin; Ma, Jiayuan; Bao, Ying; Li, Fei; Yin, Qiuxiang; Hao, Hongxun
Consistency and variability of cocrystals containing positional isomers: the self-assembly evolution mechanism of supramolecular synthons of cresol‒piperazine
IUCrJ, 2019, 6
1552402 CIF
Paper
C18 H26 N2 O2P 1 21/n 15.6352; 13.4281; 11.2825
90; 93.703; 90
852Wang, Na; Huang, Xin; Chen, Lihang; Yang, Jinyue; Li, Xin; Ma, Jiayuan; Bao, Ying; Li, Fei; Yin, Qiuxiang; Hao, Hongxun
Consistency and variability of cocrystals containing positional isomers: the self-assembly evolution mechanism of supramolecular synthons of cresol‒piperazine
IUCrJ, 2019, 6
1552403 CIF
Paper
C11 H18 N2 OP 21 21 215.9035; 8.3771; 21.98
90; 90; 90
1087Wang, Na; Huang, Xin; Chen, Lihang; Yang, Jinyue; Li, Xin; Ma, Jiayuan; Bao, Ying; Li, Fei; Yin, Qiuxiang; Hao, Hongxun
Consistency and variability of cocrystals containing positional isomers: the self-assembly evolution mechanism of supramolecular synthons of cresol‒piperazine
IUCrJ, 2019, 6
1556577 CIFC2 H5 N O2P 1 21/n 15.223; 12.435; 5.563
90; 111.14; 90
336.99Broadhurst, Edward T.; Xu, Hongyi; Clabbers, Max T. B.; Lightowler, Molly; Nudelman, Fabio; Zou, Xiaodong; Parsons, Simon
Polymorph evolution during crystal growth studied by 3D electron diffraction
IUCrJ, 2020, 7, 5-9
1556578 CIFC2 H5 N O2P 1 21 15.311; 6.454; 5.694
90; 112.86; 90
179.84Broadhurst, Edward T.; Xu, Hongyi; Clabbers, Max T. B.; Lightowler, Molly; Nudelman, Fabio; Zou, Xiaodong; Parsons, Simon
Polymorph evolution during crystal growth studied by 3D electron diffraction
IUCrJ, 2020, 7, 5-9
1556579 CIFC2 H5 N O2P 317.395; 7.395; 5.75
90; 90; 120
272.32Broadhurst, Edward T.; Xu, Hongyi; Clabbers, Max T. B.; Lightowler, Molly; Nudelman, Fabio; Zou, Xiaodong; Parsons, Simon
Polymorph evolution during crystal growth studied by 3D electron diffraction
IUCrJ, 2020, 7, 5-9
1556729 CIFBa0.45 Ce1.04 K0.55 Na5.62 O76.74 Si18.76 Ti6C 1 2/c 135.908; 27.784; 33.126
90; 96.494; 90
32837Zolotarev, Jr, Andrey A.; Krivovichev, Sergey V.; Cámara, Fernando; Bindi, Luca; Zhitova, Elena S.; Hawthorne, Frank; Sokolova, Elena
Extraordinary structural complexity of ilmajokite: a multilevel hierarchical framework structure of natural origin
IUCrJ, 2020, 7, 121-128
1556730 CIFC20 H24 O2P 21 21 219.959; 11.731; 12.842
90; 90; 90
1500.3Fatima, Syeda Saima; Kumar, Rajesh; Choudhary, M. Iqbal; Yousuf, Sammer
Crystal engineering of exemestane to obtain a co-crystal with enhanced urease inhibition activity
IUCrJ, 2020, 7, 105-112
1556731 CIFC21 H28 N2 O2 SP 1 21 110.3797; 8.3706; 10.7275
90; 105.568; 90
897.9Fatima, Syeda Saima; Kumar, Rajesh; Choudhary, M. Iqbal; Yousuf, Sammer
Crystal engineering of exemestane to obtain a co-crystal with enhanced urease inhibition activity
IUCrJ, 2020, 7, 105-112
1556736 CIF
Paper
C13 H22 S Si2P -17.2016; 9.7603; 12.2829
95.4952; 92.51; 101.346
840.86Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600
1556737 CIFC22 H30 S2 Si2C 1 2/c 134.148; 6.869; 10.3442
90; 98.343; 90
2400.7Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600
1556738 CIFC22 H30 O4 S2 Si2P -16.8197; 12.1073; 16.1123
92.3607; 93.9781; 98.3425
1311.34Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600
1556739 CIFC22 H30 O4 S2 Si2P -17.3096; 11.3935; 18.7425
73.167; 105.319; 118.926
1293.21Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600
1556740 CIFC22 H30 O4 S2 Si2P -15.73; 10.2961; 10.9801
85.9433; 79.7181; 80.115
627.39Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600
1556741 CIFC22 H32 O2 S3 Si2C 1 2/c 134.344; 8.1665; 20.0791
90; 100.532; 90
5536.7Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600
1556742 CIFC22 H32 O2 S3 Si2P c c n33.63; 8.271; 19.717
90; 90; 90
5484Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600
1556743 CIFC22 H30 O2 S3 Si2C 1 2/c 131.8766; 8.4003; 10.0737
90; 95.684; 90
2684.2Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600
1556744 CIFC22 H30 O8 S3 Si2P -110.5399; 13.8276; 19.9987
79.94; 84.589; 89.771
2856.81Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600
1556745 CIFC22 H38 S2 Si2P 21 21 217.7849; 10.5146; 31.2712
90; 90; 90
2559.7Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600

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