5-Chloro-3-methylsulfinyl-2-phenyl-1-benzofuran

2007 ◽  
Vol 63 (3) ◽  
pp. o1291-o1292 ◽  
Author(s):  
Hong Dae Choi ◽  
Pil Ja Seo ◽  
Byeng Wha Son ◽  
Uk Lee

The title compound, C15H11ClO2S, was prepared by the oxidation of 5-chloro-3-methylsulfanyl-2-phenyl-1-benzofuran using 3-chloroperbenzoic acid. The 1-benzofuran ring system is almost planar. The crystal structure is stabilized by weak aromatic π–π stacking and –CH2—H...π interactions.

2015 ◽  
Vol 71 (5) ◽  
pp. o354-o355
Author(s):  
Kasirajan Gayathri ◽  
Palathurai S. Mohan ◽  
Judith A. K. Howard ◽  
Hazel A. Sparkes

In the title compound, C11H7Br3ClN, the quinoline ring system is approximately planar (r.m.s. = 0.011 Å). In the crystal, molecules are linked by C—H...Br interactions forming chains along [10-1]. The chains are linked by C—H...π and π–π interactions involving inversion-related pyridine rings [intercentroid distance = 3.608 (4) Å], forming sheets parallel to (10-1). Within the sheets, there are two significant short interactions involving a Br...Cl contact of 3.4904 (18) Å and a Br...N contact of 3.187 (6) Å, both of which are significantly shorter than the sum of their van der Waals radii.


2014 ◽  
Vol 70 (12) ◽  
pp. o1281-o1281 ◽  
Author(s):  
Mohammed El Fal ◽  
Youssef Ramli ◽  
El Mokhtar Essassi ◽  
Mohamed Saadi ◽  
Lahcen El Ammari

In the title compound, C7H8N4S, the non-H atoms of the pyrazolo[3,4-d]pyrimidine ring system and the methylsulfanyl group lie on a crystallographic mirror plane. In the crystal, molecules are linkedviaa number of π–π interactions [centroid–centroid distances vary from 3.452 (7) to 3.6062 (8) Å], forming a three-dimensional structure.


2014 ◽  
Vol 70 (9) ◽  
pp. o1065-o1066
Author(s):  
Hong Dae Choi ◽  
Uk Lee

In the title compound, C16H12ClFO3S, the dihedral angle between the plane of the benzofuran ring system [r.m.s. deviation = 0.007 (1) Å] and that of the 4-fluorophenyl ring is 76.11 (5)°. In the crystal, molecules are linked into [010] chainsviatwo different inversion-generated pairs of C—H...O hydrogen bonds. The crystal structure also exhibits weak π–π interactions between the benzene and furan rings of neighbouring molecules [centroid–centroid distance = 3.820 (2) Å].


Author(s):  
Youngeun Jeon ◽  
Gihaeng Kang ◽  
Seonghwa Cho ◽  
Tae Ho Kim

In the title compound, C14H15N3(systematic name: 4-cyclopropyl-6-methyl-N-phenylpyrimidin-2-amine), which is the anilinopyrimidine fungicide cyprodinil, the dihedral angles between the planes of the central pyrimidine ring and the terminal phenyl ring and the mean plane of the cyclopropane ring system are 14.52 (11) and 88.79 (10)°, respectively. In the crystal, weak π–π interactions [3.8551 (11) Å] connect the dimers into chains along theb-axis direction.


2006 ◽  
Vol 62 (7) ◽  
pp. o2929-o2931
Author(s):  
Mustafa Odabaşoğlu ◽  
Orhan Büyükgüngör

The crystal structure of the title compound, C18H12N2O, is stabilized by intermolecular N—H...O hydrogen bonds and C—H...π interactions. N—H...O hydrogen bonds generate a C(6) chain. The dihedral angle between the isoindoline group and the naphthalene ring system is 24.96 (12)°.


2014 ◽  
Vol 70 (12) ◽  
pp. o1268-o1269
Author(s):  
M. Kayalvizhi ◽  
G. Vasuki ◽  
R. Raj Kumar ◽  
V. Rajeswar Rao

In the title compound, C24H14Cl2N2O2S, the 2H-chromene ring system is approximately planar, with a maximum deviation of 0.025 (2) Å. The thiazole ring is almost planar, with an r.m.s. deviation of 0.0022 Å, and makes a dihedral angle of 58.52 (7)° with the chromene ring system. The chromene ring system is inclined at angles of 58.3 (1) and 55.39 (9)° with respect to the two chlorophenyl rings. The two chlorophenyl rings show significant deviation from coplanarity, with a dihedral angle between them of 47.69 (8)°. The crystal structure features C—H...Cl interactions extending in (100) and propagating along thea-axis direction and weak π–π interactions [centroid–centroid separation = 3.867 (2) Å].


2015 ◽  
Vol 71 (8) ◽  
pp. o629-o630
Author(s):  
Sreevidya Thekku Veedu ◽  
Simone Techert

The title compound, C34H37N, is a pyrene derivative in which the pyrene ring system is linked to an ethylcyclohexane unit which, in turn, carries a [4-(dimethylamino)phenyl]ethyl substituent in theparaposition. The central cyclohexane ring has a chair conformation, with the exocyclic C—C bonds in equatorial orientations. The benzene ring is inclined to the mean plane of the pyrene ring system [maximum deviation = 0.038 (4) Å] by 14.84 (15)°. In the crystal, molecules are linked by C—H...π interactions, forming chains propagating along [010]. The crystal was refined as a non-merohedral twin [domain ratio = 0.9989 (4):0.0011 (4)].


IUCrData ◽  
2020 ◽  
Vol 5 (9) ◽  
Author(s):  
Lin Chen ◽  
Jin Hu ◽  
Li-Li Wu ◽  
Hong-Shun Sun

In the title compound, C27H18N2, the mean planes of the pendant benzene rings are approximately perpendicular to one another, making a dihedral angle of 79.3 (5)°; the indeno[1,2-b]quinoxaline ring system (r.m.s. deviation = 0.1197 Å) is twisted with respect to the pendant benzene rings by 70.0 (4) and 67.6 (3)°. Weak aromatic π–π stacking [centroid–centroid separation = 3.628 (2) Å] and C—H...π interactions occur in the crystal.


2014 ◽  
Vol 70 (11) ◽  
pp. o1168-o1168
Author(s):  
Hong Dae Choi ◽  
Uk Lee

In the title compound, C15H10F2O2S, the dihedral angle between the planes of the benzofuran ring system [r.m.s. deviation = 0.015 (1) Å] and the 3-fluorophenyl ring is 26.60 (5)°. In the crystal, molecules are linked by C—H...O and C—H...F hydrogen bonds, and by π–π interactions between the benzofuran rings of inversion-related molecules [centroid(benzene)–centroid(furan) distance = 3.819 (2) Å], forming a three-dimensional network.


2014 ◽  
Vol 70 (9) ◽  
pp. o941-o941
Author(s):  
Hasna Hayour ◽  
Abdelmalek Bouraiou ◽  
Sofiane Bouacida ◽  
Saida Benzerka ◽  
Ali Belfaitah

In the title compound, C13H12ClNO2, the dihedral angle between the planes of the quinoline ring system (r.m.s. deviation = 0.029 Å) and the ester group is 54.97 (6)°. The C—O—C—Cm(m = methyl) torsion angle is −140.62 (16)°. In the crystal, molecules interactviaaromatic π–π stacking [shortest centroid–centroid separation = 3.6774 (9) Å] generating (010) sheets.


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