نتایج جستجو برای: iran46 2 e

تعداد نتایج: 3356676  

2009
Guo-Biao Cao

The mol-ecule of the title compound, C(15)H(13)ClN(2)O(2), displays an E configuration about the C=N bond. The dihedral angle between the two benzene rings is 77.1 (2)°. In the crystal structure, mol-ecules are linked through inter-molecular N-H⋯O hydrogen bonds, forming chains running along the b axis.

2008
Özlem Deveci Şamil Işık Ferda Erşahin Erbil Ağar

The mol-ecule of the title compound, C(14)H(12)ClNO, adopts the enol-imine tautomeric form, with an intra-molecular O-H⋯N hydrogen bond. In the mol-ecule, the two benzene rings are twisted with respect to each other by 30.6 (2)°. The crystal structure is stabilized by inter-molecular C-H⋯π inter-actions.

2010
Serap Yazıcı Çiğdem Albayrak İsmail Gümrükçüoğlu İsmet Şenel Orhan Büyükgüngör

The mol-ecule of the title compound, C(15)H(15)NO(2), crystallizes in a zwitterionic form, and displays an E configuration about the C=N bond. The dihedral angle between the two aromatic rings is 5.59 (6)°. An intra-molecular N-H⋯O hydrogen bond generates an S(6) ring motif. In the crystal structure, pairs of mol-ecules are linked into centrosymmetric R(2) (2)(10) dimers by pairs of O-H⋯O hydro...

2012
Hakkı Yasin Odabaşoğlu Orhan Büyükgüngör Osman Ozan Avinç Mustafa Odabaşoğlu

In the crystal of the title compound, C(14)H(10)F(3)NO, intra-molecular O-H⋯N and O-H⋯F hydrogen bonds generate S(6) and S(10) intramolecular hydrogen-bonded rings. The dihedral angle between the planes of the aromatic rings is 13.00 (14)°.

2010
Rahman Bikas Hassan Hosseini Monfared Canan Kazak N. Burcu Arslan Keyvan Bijanzad

In the title compound, C(12)H(10)N(2)O(3), the dihedral angle between the benzene ring and the furan ring is 16.12 (13)°. The conformation is stabilized by an intra-molecular O-H⋯N hydrogen bond. Inter-molecular N-H⋯O hydrogen bonds with the keto group as acceptor lead to strands along [001]. The mol-ecule displays a trans configuration with respect to the C=N and N-N bonds.

2010
Xing-Cong Wang Hua Xu Kun Qian

The mol-ecule of the title compound, C(18)H(19)N(3)O, displays a trans configuration with respect to the C=N double bond. The dihedral angle between the planes of the two benzene rings is 2.62 (11)°. A strong intra-molecular O-H⋯N hydrogen bond stabilizes the mol-ecular conformation.

2014
Peng Liu Libin Yuan Xiuqing Song Hong Yan

The complete mol-ecule of the title compound, C24H28N4O4, is generated by crystallographic inversion symmetry. The ethyl side chain is disordered over two sets of sites in a 0.57 (4):0.43 (4) ratio. The dihedral angles between the methyl-idene group and the phenyl ring and ester side chain (major conformation) are 7.61 (8) and 86.95 (8)°, respectively. In the crystal, mol-ecules are linked via ...

2013
Jin-Li Yao Xu Zhang Hong-Yan Li Jian-Qing Ye

The title compound, C(18)H(18)Br(2)N(2), is centrosymmetric with the mid-point of the central C-C bond of the butyl group located on an inversion center. The terminal benzene ring is approximately perpendicular to the central butyl plane [dihedral angle = 71.9 (8)°]. No hydrogen bonding or aromatic stacking is observed in the crystal.

2012
Reza Kia Hadi Kargar Amir Adabi Ardakani Muhammad Nawaz Tahir

The asymmetric unit of the title compound, C(16)H(12)Cl(4)N(2)O(2), comprises half of a potentially tetra-dentate Schiff base ligand, located about a twofold rotation axis which bis-ects the central C-C bond of the ethane-1,2-diamine group. In the solid state, the compound exists in the zwitterionic form. There are two intra-molecular N-H⋯O hydrogen bonds making S(6) ring motifs. In the crystal...

2010
Hadi D. Arman Trupta Kaulgud Edward R. T. Tiekink

The asymmetric unit of the title 1:2 adduct, C(12)H(10)N(4)·2C(8)H(8)O(2), comprises a single mol-ecule of 2-phenyl-acetic acid and half a mol-ecule of 3-pyridine-aldazine; the latter is completed by crystallographic inversion symmetry. In the crystal, mol-ecules are connected into a three-component aggregate via O-H⋯N hydrogen bonds. As the carboxyl group lies above the plane through the benze...

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