Crystallography Open Database

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Searching journal of publication like 'IuCrJ'

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1545685 CIFC14 H10 I2 N2 O2P -18.4678; 9.6066; 9.6522
81.239; 84.45; 72.336
738.36Mittapalli, Sudhir; Sravanakumar Perumalla, D.; Nangia, Ashwini
Mechanochemical synthesis of <i>N</i>-salicylideneaniline: thermosalient effect of polymorphic crystals
IUCrJ, 2017, 4
1545809 CIFC32 H36 N4 O4P 1 21/n 17.8566; 21.336; 8.3872
90; 90.911; 90
1405.8Mir, Niyaz A.; Dubey, Ritesh; Desiraju, Gautam R.
Four- and five-component molecular solids: crystal engineering strategies based on structural inequivalence
IUCrJ, 2016, 3, 96-101
1545810 CIFC30 H34 N2 O4 S2P 1 21/n 17.7971; 22.217; 7.9179
90; 91.479; 90
1371.1Mir, Niyaz A.; Dubey, Ritesh; Desiraju, Gautam R.
Four- and five-component molecular solids: crystal engineering strategies based on structural inequivalence
IUCrJ, 2016, 3, 96-101
1545811 CIFC43 H49 N5 O4P -17.409; 8.781; 15.36
81.63; 86.57; 78.64
969Mir, Niyaz A.; Dubey, Ritesh; Desiraju, Gautam R.
Four- and five-component molecular solids: crystal engineering strategies based on structural inequivalence
IUCrJ, 2016, 3, 96-101
1545812 CIFC29 H30 N2 O2P 1 21/c 17.5571; 24.125; 12.9363
90; 92.034; 90
2357Mir, Niyaz A.; Dubey, Ritesh; Desiraju, Gautam R.
Four- and five-component molecular solids: crystal engineering strategies based on structural inequivalence
IUCrJ, 2016, 3, 96-101
1545813 CIFC34 H38 N2 O4P 1 21/n 18.292; 20.615; 8.47
90; 92.435; 90
1446.6Mir, Niyaz A.; Dubey, Ritesh; Desiraju, Gautam R.
Four- and five-component molecular solids: crystal engineering strategies based on structural inequivalence
IUCrJ, 2016, 3, 96-101
1545814 CIFC44 H46 N6 O4P -17.485; 8.797; 14.171
96.618; 93.306; 91.826
924.6Mir, Niyaz A.; Dubey, Ritesh; Desiraju, Gautam R.
Four- and five-component molecular solids: crystal engineering strategies based on structural inequivalence
IUCrJ, 2016, 3, 96-101
1545815 CIFC42 H44 N4 O4 S2P -17.492; 9.069; 13.643
98.069; 92.516; 91.428
916.5Mir, Niyaz A.; Dubey, Ritesh; Desiraju, Gautam R.
Four- and five-component molecular solids: crystal engineering strategies based on structural inequivalence
IUCrJ, 2016, 3, 96-101
1545816 CIFC90 H96 N10 O8P -17.3795; 8.8871; 29.533
89.495; 84.054; 85.281
1919.9Mir, Niyaz A.; Dubey, Ritesh; Desiraju, Gautam R.
Four- and five-component molecular solids: crystal engineering strategies based on structural inequivalence
IUCrJ, 2016, 3, 96-101
1545817 CIFC75 H73 N8 O6P -17.478; 8.739; 23.37
92.36; 90.29; 93.131
1524Mir, Niyaz A.; Dubey, Ritesh; Desiraju, Gautam R.
Four- and five-component molecular solids: crystal engineering strategies based on structural inequivalence
IUCrJ, 2016, 3, 96-101
1545818 CIFC46 H48 N4 O4P -17.528; 8.948; 14.11
96.219; 94.61; 90.598
942Mir, Niyaz A.; Dubey, Ritesh; Desiraju, Gautam R.
Four- and five-component molecular solids: crystal engineering strategies based on structural inequivalence
IUCrJ, 2016, 3, 96-101
1545819 CIFC44 H48 N6 O4P -17.4957; 8.7882; 14.308
97.049; 94.334; 91.781
931.9Mir, Niyaz A.; Dubey, Ritesh; Desiraju, Gautam R.
Four- and five-component molecular solids: crystal engineering strategies based on structural inequivalence
IUCrJ, 2016, 3, 96-101
1545820 CIFC42 H46 N4 O4 S2P -17.531; 9.026; 13.941
98.18; 92.03; 91.235
937Mir, Niyaz A.; Dubey, Ritesh; Desiraju, Gautam R.
Four- and five-component molecular solids: crystal engineering strategies based on structural inequivalence
IUCrJ, 2016, 3, 96-101
1545821 CIFC75 H75 N8 O6P -17.4611; 8.7285; 23.6219
92.85; 91.347; 93.317
1533.34Mir, Niyaz A.; Dubey, Ritesh; Desiraju, Gautam R.
Four- and five-component molecular solids: crystal engineering strategies based on structural inequivalence
IUCrJ, 2016, 3, 96-101
1545822 CIFC77 H79 N8 O5P -17.4709; 8.7326; 23.6381
92.857; 91.317; 93.293
1537.18Mir, Niyaz A.; Dubey, Ritesh; Desiraju, Gautam R.
Four- and five-component molecular solids: crystal engineering strategies based on structural inequivalence
IUCrJ, 2016, 3, 96-101
1545823 CIFC77 H77 N6 O6P -17.4914; 8.8265; 23.583
92.722; 92.976; 91.626
1554.77Mir, Niyaz A.; Dubey, Ritesh; Desiraju, Gautam R.
Four- and five-component molecular solids: crystal engineering strategies based on structural inequivalence
IUCrJ, 2016, 3, 96-101
1545824 CIFC46 H50 N4 O4P -17.5407; 8.9198; 14.284
96.506; 96.093; 90.634
948.9Mir, Niyaz A.; Dubey, Ritesh; Desiraju, Gautam R.
Four- and five-component molecular solids: crystal engineering strategies based on structural inequivalence
IUCrJ, 2016, 3, 96-101
1545825 CIFC27 H38 N2 O2P 1 21/c 18.356; 24.894; 11.744
90; 96.324; 90
2428Mir, Niyaz A.; Dubey, Ritesh; Desiraju, Gautam R.
Four- and five-component molecular solids: crystal engineering strategies based on structural inequivalence
IUCrJ, 2016, 3, 96-101
1545826 CIFC50 H52 N4 O4P -17.546; 9.4647; 14.8318
85.58; 77.14; 86.77
1028.8Mir, Niyaz A.; Dubey, Ritesh; Desiraju, Gautam R.
Four- and five-component molecular solids: crystal engineering strategies based on structural inequivalence
IUCrJ, 2016, 3, 96-101
1545827 CIFC42 H48 N6 O4P -17.324; 8.723; 15.107
82.27; 88.73; 78.76
938Mir, Niyaz A.; Dubey, Ritesh; Desiraju, Gautam R.
Four- and five-component molecular solids: crystal engineering strategies based on structural inequivalence
IUCrJ, 2016, 3, 96-101

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