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Combined Use of Structure Analysis, Studies of Molecular Association in Solution, and Molecular Modelling to Understand the Different Propensities of Dihydroxybenzoic Acids to Form Solid Phases

机译:结合结构分析,溶液中分子吻合研究的研究,以及了解二羟基苯甲酸不同施力形成固相的分子模型

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摘要

The arrangement of hydroxyl groups in the benzene ring has a significant effect on the propensity of dihydroxybenzoic acids (diOHBAs) to form different solid phases when crystallized from solution. All six diOHBAs were categorized into distinctive groups according to the solid phases obtained when crystallized from selected solvents. A combined study using crystal structure and molecule electrostatic potential surface analysis, as well as an exploration of molecular association in solution using spectroscopic methods and molecular dynamics simulations were used to determine the possible mechanism of how the location of the phenolic hydroxyl groups affect the diversity of solid phases formed by the diOHBAs. The crystal structure analysis showed that classical carboxylic acid homodimers and ring-like hydrogen bond motifs consisting of six diOHBA molecules are prominently present in almost all analyzed crystal structures. Both experimental spectroscopic investigations and molecular dynamics simulations indicated that the extent of intramolecular bonding between carboxyl and hydroxyl groups in solution has the most significant impact on the solid phases formed by the diOHBAs. Additionally, the extent of hydrogen bonding with solvent molecules and the mean lifetime of solute–solvent associates formed by diOHBAs and 2-propanol were also investigated.
机译:苯环中羟基的布置对二羟基苯甲酸(DIOHBA)的倾向产生显着影响,以在从溶液中结晶时形成不同的固相。根据从选定溶剂结晶时获得的固相,所有六个二氧化物分为独特的基团。使用光谱方法和分子动力学模拟使用晶体结构和分子静电电位表面分析的组合研究,以及溶液中分子关联的探索来确定酚醛羟基位置如何影响多样性的可能机制通过DIOHBA形成的固相。晶体结构分析表明,在几乎所有分析的晶体结构中,由六种二氧化物分子组成的典型羧酸同源体和环状氢键基序列突出存在。实验光谱研究和分子动力学模拟表明溶液中羧基和羟基之间的分子内键合的程度对DIOHBA形成的固相的影响最大。另外,还研究了与溶剂分子的氢键合的程度和二氧化碳和2-丙醇形成的溶质 - 溶剂助缔合物的平均寿命。

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