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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Activation and thermodynamic parameter study of the heteronuclear C=O???H-N hydrogen bonding of diphenylurethane isomeric structures by FT-IR spectroscopy using the regularized inversion of an eigenvalue problem
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Activation and thermodynamic parameter study of the heteronuclear C=O???H-N hydrogen bonding of diphenylurethane isomeric structures by FT-IR spectroscopy using the regularized inversion of an eigenvalue problem

机译:通过特征值正则化的FT-IR光谱研究二苯基氨基甲酸酯异构体结构的杂核C = O ??? H-N氢键的活化和热力学参数

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摘要

The doublet of the ν(C=O) carbonyl band in isomeric urethane systems has been extensively discussed in qualitative terms on the basis of FT-IR spectroscopy of the macromolecular structures. Recently, a reaction extent model was proposed as an inverse kinetic problem for the synthesis of diphenylurethane for which hydrogen-bonded and non-hydrogen-bonded C=O functionalities were identified. In this article, the heteronuclear C=O???H-N hydrogen bonding in the isomeric structure of diphenylurethane synthesized from phenylisocyanate and phenol was investigated via FT-IR spectroscopy, using a methodology of regularization for the inverse reaction extent model through an eigenvalue problem. The kinetic and thermodynamic parameters of this system were derived directly from the spectroscopic data. The activation and thermodynamic parameters of the isomeric structures of diphenylurethane linked through a hydrogen bonding equilibrium were studied. The study determined the enthalpy (ΔH = 15.25 kJ/mol), entropy (TΔS = 14.61 kJ/mol), and free energy (ΔG = 0.6 kJ/mol) of heteronuclear C=O???H-N hydrogen bonding by FT-IR spectroscopy through direct calculation from the differences in the kinetic parameters (δΔ ~?H, -TδΔ ~?S, and δΔ ~?G) at equilibrium in the chemical reaction system. The parameters obtained in this study may contribute toward a better understanding of the properties of, and interactions in, supramolecular systems, such as the switching behavior of hydrogen bonding.
机译:基于大分子结构的FT-IR光谱,定性地广泛讨论了异构氨基甲酸酯体系中ν(C = O)羰基带的二重峰。近来,提出了反应程度模型作为合成二苯氨基甲酸酯的逆动力学问题,其中已鉴定出氢键和非氢键的C = O官能团。在本文中,通过使用特征值问题对逆反应程度模型进行正则化的方法,通过FT-IR光谱研究了由苯基异氰酸酯和苯酚合成的二苯基氨基甲酸酯的异构结构中的异核C = O-H-N氢键。该系统的动力学和热力学参数直接来自光谱数据。研究了通过氢键平衡连接的二苯基氨基甲酸酯异构体的活化和热力学参数。研究通过FT-IR确定了杂核C = O ??? HN氢键的焓(ΔH= 15.25 kJ / mol),熵(TΔS= 14.61 kJ / mol)和自由能(ΔG= 0.6 kJ / mol)。光谱法通过直接计算化学反应系统平衡时动力学参数(δΔ〜?H,-TδΔ〜?S和δΔ〜?G)的差异来计算。在这项研究中获得的参数可能有助于更好地理解超分子系统的性质和相互作用,例如氢键的转换行为。

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