نتایج جستجو برای: thia

تعداد نتایج: 1208  

Journal: :Chemical communications 2014
Béatrice Quiclet-Sire Samir Z Zard

Geminal mercapto trialkyl- and trialkoxy-silanes undergo an efficient radical chain rearrangement, whereby the silyl group migrates from carbon to sulfur; the starting materials are readily obtained by exploiting the peroxide initiated radical addition of dithiocarbonates (xanthates) to trialkyl- or trialkoxy-vinylsilanes.

2015
Hemant Yennawar Aaron S. Cali Yiwen Xie Lee J. Silverberg

The crystal structures are reported of the isomeric compounds 2-(4-nitro-phen-yl)-3-phenyl-2,3-di-hydro-4H-1,3-benzo-thia-zin-4-one, (I), and 2-(2-nitro-phen-yl)-3-phenyl-2,3-di-hydro-4H-1,3-benzo-thia-zin-4-one, (II), both C20H14N2O3S, being the para-nitro and ortho-nitro forms, respectively, the meta-form of which is known [Yennawar et al. (2013). Acta Cryst. E69, o1679]. The six-membered thi...

2013
Muhammad Shafiq M. Nawaz Tahir William T. A. Harrison Iftikhar Hussain Bukhari Islam Ullah Khan

In the title compound, C(17)H(16)BrN(3)O(2)S, the dihedral angle between the aromatic rings is 1.24 (15)° and the C=N-N=C torsion angle is 167.7 (3)°. The conformation of the thia-zine ring is an envelope, with the S atom displaced by 0.805 (3) Å from the mean plane of the other five atoms (r.m.s. deviation = 0.027 Å). In the crystal, C-H⋯O inter-actions link the mol-ecules into C(10) [010] cha...

2010
Hoong-Kun Fun Madhukar Hemamalini D. Jagadeesh Prasad G. K. Nagaraja V. V. Anitha

In the title compound, C(14)H(14)ClN(3)S, the imidazo[2,1-b][1,3,4]thia-diazole system is essentially planar, with a maximum deviation of 0.006 (2) Å. The dihedral angle between the imidazo[2,1-b][1,3,4]thia-diazole and chloro-phenyl rings is 5.07 (8)°. In the crystal, there are no classical hydrogen bonds but stabilization is provided by weak π-π [centroid-centroid distance = 3.5697 (11) Å] an...

2013
Hendryk Würfel Helmar Görls Dieter Weiss Rainer Beckert

The title compound, C16H20N2O2S2, crystallizes with two enanti-omers (A and B) in the asymmetric unit. The most noticeable difference between these two mol-ecules is the relative orientation of the benzo-thia-zole rings, with S-C-C-S torsion angles of -19.4 (2) (mol-ecule A) and 100.6 (1)° (mol-ecule B). The amide structure of the thia-zolidinone rings leads to inter-molecular hydrogen-bonded d...

2009
Hoong-Kun Fun Wei-Ching Liew B. Chandrakantha Arun M. Isloor

In the title compound, C(16)H(11)F(4)N(3)S, the dihedral angles between the thia-diazole ring and the difluorobenzyl rings are 81.95 (7) and 81.96 (7)°, whereas the dihedral angle between the difluorobenzyl rings is 11.41 (7)°. In the crystal structure, C-H⋯N and C-H⋯F inter-actions link the mol-ecules into two-dimensional arrays parallel to the bc plane.

2009
De-Jin Hu Ming Liu Tong-Hui Huang Hai-Yang Tu Ai-dong Zhang

In the title molecule, C(26)H(24)N(4)O(2)S, the dihedral angle between the isoxazole ring and the adjoining benzene ring is 21.4 (5)°, and between the isoxazole ring and the thia-zole ring is 14.3 (4)°. The piperidine ring is in a chair conformation. In the crystal structure, mol-ecules are linked by inter-molecular N-H⋯O and weak C-H⋯O hydrogen bonds into one-dimensional chains along [001].

2010
Hui-Ming Huang Gen-Lin Chen Min Li Guo-Gang Tu Cheng-Mei Liu

In the structure of the title compound, C(18)H(15)ClN(4)O(4)S, the dihedral angle between the two benzene rings is 1.4 (3)°. The angle between the phenyl ring and thia-diazole ring is 5.8 (4)°. The conformations of the N-H and C=O bonds are anti with respect to each other. In the crystal structure, mol-ecules are linked by inter-molecular O-H⋯N, N-H⋯O and O-H⋯O hydrogen bonds, forming a three-d...

2011
Jin-hua Yao Bing Guo Kang An Jian-ning Guan

In the title compound, C(17)H(14)N(2)O(4)S·0.5H(2)O, the mol-ecule, with the exception of the two meth-oxy-phenyl groups, is nearly planar with an r.m.s. deviation of 0.0305 Å. The two 2-meth-oxy-phenyl rings make dihedral angles of 4.1 (3) and 2.3 (3)° with the thia-diazole ring. In the crystal, inter-molecular C-H⋯O and O-H⋯N hydrogen bonds link the mol-ecules.

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