scholarly journals Crystal structure of 2-butylsulfanyl-4,6-bis[(E)-4-(dimethylamino)styryl]pyrimidine

2015 ◽  
Vol 71 (12) ◽  
pp. o978-o978
Author(s):  
Jingbao Song ◽  
Qiang Zhou ◽  
Aijian Wang

In the title compound, C28H34N4S, the dihedral angles between the pyrimidine ring and the pendant 4-(dimethylamino)benzene rings are 14.20 (5) and 14.56 (4)°. The butyl side chain adopts ananticonformation [C—C—C—C = −171.53 (13)°]. No directional interactions beyond van der Waals contacts occur in the crystal structure The title molecule has aD–A–Dstructure, in which the pyrimidine ring is the electron-withdrawing part and the 4-(dimethylamino)benzene rings are the electron-donating parts.

2015 ◽  
Vol 71 (5) ◽  
pp. o368-o368
Author(s):  
Aijian Wang ◽  
Guanghui Li

In the title compound, C24H24N2S, the dihedral angles between the central pyrimidine ring and pendant benzene rings are 18.46 (6) and 5.95 (6)°. The butylsulfanyl side chain adopts a twisted conformation [S—C—C—C = 177.34 (10)° and C—C—C—C = 67.68 (18)°]. No directional interactions beyond typical van der Waals contacts could be identified in the crystal.


2014 ◽  
Vol 70 (12) ◽  
pp. o1282-o1282
Author(s):  
Wang Yu ◽  
Jingbao Song ◽  
Aijian Wang

In the title compound, C24H22Br2N2S, the dihedral angles between the central pyrimidine ring and the pendant bromobenzene rings are 11.02 (11) and 13.20 (12)°. The butyl side chain adopts agaucheconformation [C—C—C—C = −67.4 (4)°]. In the crystal, weak aromatic π–π stacking is observed between the pyrimidine ring and one of the benzene rings [centroid–centroid separation = 3.6718 (17) Å].


2014 ◽  
Vol 70 (7) ◽  
pp. o789-o790 ◽  
Author(s):  
Alex Fabiani Claro Flores ◽  
Darlene Correia Flores ◽  
Juliano Rosa de Menezes Vicenti ◽  
Patrick Teixeira Campos

In the crystal structure of the title compound, C28H23F3N4S·CHCl3, the chloroform solvate molecules connect the pyrimidine molecules into chains along [101] through weak C—H...N and C—H...Cl hydrogen-bond interactions. There are further connections between adjacent chains through F...Cl halogen contacts of 3.185 (3) Å, with the –CF3group presenting a significant short F...F interchain distance of 2.712 (4) Å. The five-membered pyrazole ring is approximately planar (r.m.s. deviation = 0.050 Å). The pyrimidine ring makes dihedral angles of 84.15 (8) and 4.56 (8)° with the benzene rings.


2014 ◽  
Vol 70 (3) ◽  
pp. o286-o286
Author(s):  
C. S. Dileep ◽  
V. Lakshmi Ranganatha ◽  
N. K. Lokanath ◽  
S. A. Khanum ◽  
M. A. Sridhar

In the title compound, C14H11FO2, the dihedral angles beteen the central C3O ketone residue and the fluoro- and hydroxy-substituted benzene rings are 50.44 (9) and 12.63 (10)°, respectively. The planes of the benzene rings subtend a dihedral angle of 58.88 (9)° and an intramolecular O—H...O hydrogen bond closes anS(6) ring. No directional interactions beyond van der Waals packing contacts were identified in the crystal structure.


2014 ◽  
Vol 70 (12) ◽  
pp. o1252-o1252 ◽  
Author(s):  
Rodolfo Moreno-Fuquen ◽  
Diego F. Sánchez ◽  
Javier Ellena

In the title compound, C10H6N4O5S, the mean plane of the non-H atoms of the central amide fragment C—N—C(=O)—C [r.m.s. deviation = 0.0294 Å] forms dihedral angles of 12.48 (7) and 46.66 (9)° with the planes of the thiazole and benzene rings, respectively. In the crystal, molecules are linked by N—H...O hydrogen bonds, forming chains along [001]. In addition, weak C—H...O hydrogen bonds link these chains, forming a two-dimensional network, containingR44(28) ring motifs parallel to (100).


2014 ◽  
Vol 70 (12) ◽  
pp. o1246-o1247 ◽  
Author(s):  
Joel T. Mague ◽  
Shaaban K. Mohamed ◽  
Mehmet Akkurt ◽  
Hussein M. S. El-Kashef ◽  
Mustafa R. Albayati

The title compound, C21H17N7O4, is in an `extended' conformation aided by an intramolecular N—H...O hydrogen bond. The pyrazole ring makes dihedral angles of 29.17 (6), 65.47 (4) and 9.91 (7)°, respectively, with the phenyl, pyrrole and benzene rings. In the crystal, molecules are connected by pairs of N—H...O and C—H...O hydrogen bonds, forming inversion dimers which associate into ribbons running along thebaxis through complementary C—H...O interactions.


2014 ◽  
Vol 70 (9) ◽  
pp. o909-o910 ◽  
Author(s):  
Marcos Flores-Alamo ◽  
Ruth Meléndrez-Luévano ◽  
José A. Ortiz Márquez ◽  
Estibaliz Sansinenea Royano ◽  
Blanca M. Cabrera-Vivas

The title compound, C19H15N3O2, shows anEconformation of the imine bond. The dihedral angle between the planes of the phenyl rings in the diphenylhydrazine groups is 88.52 (4)°. The 2-nitrobenzene ring shows a torsion angle of 10.17 (8)° with the C=N—N plane. A short intramolecular C—H...O contact occurs. In the crystal, only van der Waals contacts occur between the molecules.


2014 ◽  
Vol 70 (9) ◽  
pp. o899-o900
Author(s):  
Jian-Qiang Zheng ◽  
Yan-Jie Cui ◽  
Xiao-Ping Rao

The title compound, C28H34ClNO2{systematic name: (E)-1-(4-chlorophenyl)ethanoneO-[(1R,4aS,10aR)-7-isopropyl-1,4a-dimethyl-1,2,3,4,4a,9,10,10a-octahydrophenanthrene-1-carbonyl]oxime}, was synthesized from dehydroabietic acid. In the dehydroabietyl moiety, the central and terminal cyclohexane rings display chair and half-chair conformations, respectively, and atrans-ring junction. The C=N bond is in anEconformation and the C—O—N=C torsion angle is 148.1 (5)°. No directional interactions except van der Waals contacts occur in the crystal structure.


2006 ◽  
Vol 62 (4) ◽  
pp. o1279-o1280
Author(s):  
Shu-Ping Zhang ◽  
Zhao-Di Liu ◽  
Si-Chang Shao

In the title compound, C20H15ClN4, the two benzene rings form dihedral angles of 30.95 (9) and 70.69 (6)° with the triazole ring, and the dihedral angle between the triazole and the pyridine rings is 43.38 (8)°. Intermolecular C—H...N hydrogen bonds are observed in the crystal structure.


Author(s):  
Rajesh Kumar ◽  
Shafqat Hussain ◽  
Khalid M. Khan ◽  
Shahnaz Perveen ◽  
Sammer Yousuf

In the title compound, C16H10Cl2N2O2S, the dihedral angles formed by the chloro-substituted benzene rings with the central oxadiazole ring are 6.54 (9) and 6.94 (8)°. In the crystal, C—H...N hydrogen bonding links the molecules into undulating ribbons running parallel to thebaxis. Hirshfeld surface analysis indicates that the most important contributions for the crystal packing are the H...C (18%), H...H (17%), H...Cl (16.6%), H...O (10.4%), H...N (8.9%) and H...S (5.9%) interactions.


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