(E)-4-{2-[4-(全氧基)苯基]重氮基}苯甲酸的晶体结构。

IF 0.9
Md Lutfor Rahman, Mashitah Mohd Yusoff, Jamil Ismail, Huey Chong Kwong, Ching Kheng Quah
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引用次数: 0

摘要

标题化合物C16H14N2O3具有偶氮苯[-N=N- = 1.2481 (16) Å]键的E构象。苯环几乎共面[二面角= 1.36(7)°]。碳氧酸基团的O原子在两组位点上无序,并以0.5:0.5的占用率被精炼。碳氧酸基团的两个无序组分与其所连接的苯环成1.5(14)°和3.8(12)°的二面角。在晶体中,分子通过对O- h⋯O氢键连接,形成倒置二聚体。二聚体通过C-H⋯O氢键连接,形成平行于[120]的带状结构。这些条带通过C-H⋯π相互作用连接,形成平行于(001)的板。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Crystal structure of (E)-4-{2-[4-(all-yloxy)phen-yl]diazen-yl}benzoic acid.

Crystal structure of (E)-4-{2-[4-(all-yloxy)phen-yl]diazen-yl}benzoic acid.

Crystal structure of (E)-4-{2-[4-(all-yloxy)phen-yl]diazen-yl}benzoic acid.

Crystal structure of (E)-4-{2-[4-(all-yloxy)phen-yl]diazen-yl}benzoic acid.

The title compound, C16H14N2O3, has an E conformation about the azo-benzene [-N=N- = 1.2481 (16) Å] linkage. The benzene rings are almost coplanar [dihedral angle = 1.36 (7)°]. The O atoms of the carb-oxy-lic acid group are disordered over two sets of sites and were refined with an occupancy ratio of 0.5:0.5. The two disordered components of the carb-oxy-lic acid group make dihedral angles of 1.5 (14) and 3.8 (12)° with the benzene ring to which they are attached. In the crystal, mol-ecules are linked via pairs of O-H⋯O hydrogen bonds, forming inversion dimers. The dimers are connected via C-H⋯O hydrogen bonds, forming ribbons lying parallel to [120]. These ribbons are linked via C-H⋯π inter-actions, forming slabs parallel to (001).

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来源期刊
自引率
33.30%
发文量
0
审稿时长
1.3 months
期刊介绍: Acta Crystallographica Section E: Structure Reports Online is the IUCr highly popular open-access structural journal. It provides a simple and easily accessible publication mechanism for the growing number of inorganic, metal-organic and organic crystal structure determinations. The electronic submission, validation, refereeing and publication facilities of the journal ensure very rapid and high-quality publication, whilst key indicators and validation reports provide measures of structural reliability. In 2009, the journal published over 4000 structures. The average publication time is less than one month.
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