Preparation, Crystallographic Feature, and Hirshfeld Surface Analysis of Two Organic Salts Based

IF 1.4 4区 化学 Q4 CHEMISTRY, INORGANIC & NUCLEAR
R. Gao, Y. Ji, Y. Cai, X. Ma, Z. Li, S. Jin, D. Wang
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引用次数: 0

Abstract

Two salts of 1,2-diaminobenzene (dab) as acceptor with the trichloroacetic acid and 4-nitro-phthalic acid as donor were prepared and featured by the multiple analytical techniques of FTIR, elemental analysis (EA), and single crystal X-ray diffraction (SCXRD). The structural studies tell that the cation and anion are joined together by the energetic N+–H⋯O H-bonds due to the transfer of the proton from the donor to the acceptor. The salts show well resolved proton transfer bands in the regions where neither the donor nor the acceptor has any IR peaks. Spectrophotomeric and crystallographic studies have ensured the formation of 2:1/1:1 salts. The chief non-covalent interactions were counted via the Hirshfeld surface analysis. Despite variations of the carboxylic acids, there both bore the strong intermolecular N–HO H-bonds. Apart from the strong classical H-bonds, other supramolecular associates of O–O, Cl–C/Cl–O/Cl–Cl, CH–O, C–π, and π–π are also involved in the spatial stretchings. The anionic C7 chain was built at 2 by the O–H⋯O H-bonds. The roles of these non-covalent contacts are made clear. For the combination of the weak contacts, both salts exhibited the 3D views.

Abstract Image

两种有机盐的制备、晶体学特征及赫希菲尔德表面分析
以三氯乙酸和4-硝基邻苯二甲酸为供体,制备了两种1,2-二氨基苯(dab)盐,并通过红外光谱(FTIR)、元素分析(EA)和单晶x射线衍射(SCXRD)等多种分析技术对其进行了表征。结构研究表明,由于质子从供体转移到受体,阳离子和阴离子通过高能N+ - h⋯O - h键连接在一起。在供体和受体均无IR峰的区域,盐显示出良好的质子转移带。分光光度法和晶体学研究确保了2:1/1:1盐的形成。通过Hirshfeld表面分析计算了主要的非共价相互作用。尽管羧酸不同,但它们都具有很强的分子间N-HO氢键。除了经典的强氢键外,O-O、Cl-C / Cl-O / Cl-Cl - cl、CH-O、C -π和π -π等其他超分子缔合物也参与了空间拉伸。阴离子C7链由O - h⋯O氢键建立在2位。这些非共价接触的作用是明确的。对于弱接触组合,两种盐均呈现三维视图。
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来源期刊
Journal of Structural Chemistry
Journal of Structural Chemistry 化学-无机化学与核化学
CiteScore
1.60
自引率
12.50%
发文量
142
审稿时长
8.3 months
期刊介绍: Journal is an interdisciplinary publication covering all aspects of structural chemistry, including the theory of molecular structure and chemical bond; the use of physical methods to study the electronic and spatial structure of chemical species; structural features of liquids, solutions, surfaces, supramolecular systems, nano- and solid materials; and the crystal structure of solids.
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