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首页> 外文期刊>The Journal of Chemical Physics >Carboxylic acids in aqueous solutions: Hydrogen bonds, hydrophobic effects, concentration fluctuations, ionization, and catalysis
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Carboxylic acids in aqueous solutions: Hydrogen bonds, hydrophobic effects, concentration fluctuations, ionization, and catalysis

机译:羧酸在水溶液中:氢键,疏水效应,浓度波动,电离和催化

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摘要

In the frequency range between 100 kHz and 2 GHz, ultrasonic absorption spectra have been measured for a series of carboxylic acids from formic to enanthic acid, including constitutional isomers. Also investigated have been the spectra for mixtures with water of short-chain formic, acetic, propionic, butyric, and isobutyric acid, in each case covering the complete composition range. The neat carboxylic acids feature two Debye-type relaxation terms with relaxation times between 5.6 and 260 ns as well as 0.14 and 1.4 ns, respectively, at room temperature. Depending on the composition, mixtures with water reveal an additional Debye relaxation term in the intermediate frequency range (acetic acid) or a term subject to a relaxation time distribution (propionic, butyric, and isobutyric acid). The relaxations of the neat acids are assigned to the equilibrium between monomers and single-hydrogen-bonded linear dimers and between linear and twofold-hydrogen-bonded cyclic dimers. The latter equilibrium is considerably catalyzed by hydronium and carboxylate ions. Several mixtures with water indicate one of the up to three Debye relaxations to reflect the protolysis of the organic acid. The term with underlying relaxation time distribution is due to noncritical fluctuations in the local concentrations. The Debye relaxations are evaluated to yield the parameters of the relevant elementary chemical reactions, such as the rate and equilibrium constants and the isentropic reaction volumes. A comparison of the correlation length of concentration fluctuations with data for other aqueous systems confirms the idea that the hydrophobic part of the organic constituent promotes the formation of a micro-heterogeneous liquid structure, whereas the hydrophilic moiety is of minor importance in this respect. The high-frequency limiting absorption suggests the equilibrium between conformers of linear dimers to contribute to the spectra well above the frequency range of measurements. Published by
机译:在100kHz和2GHz之间的频率范围内,已经测量了一系列来自甲酸至金属酸的一系列羧酸的超声波吸收光谱,包括结构异构体。还研究了含有短链型,醋酸,丙种,丁基和异丁酸的混合物的光谱,在覆盖完整的组成范围内。整齐的羧酸分别具有两种Deybe型松弛术语,在室温下分别在5.6和260ns和0.14和1.4ns之间进行松弛时间。取决于组合物,水的混合物在中间频率范围(乙酸)或受松弛时间分布(丙酸,丁基和异丁酸)的术语中露出另外的脱义弛豫项。整洁酸的松弛被分配给单体和单氢键的线性二聚体和线性和双重氢键的环状二聚体之间的平衡。后者均衡被氢化镓和羧酸盐离子催化。具有水的几种混合物表示最多三种德比弛豫,以反映有机酸的蛋白水解。具有底层弛豫时间分布的术语是由于局部浓度的非临界波动。评估德拜德的弛豫,以产生相关基本化学反应的参数,例如速率和平衡常数和等熵反应体积。浓度波动与其他水系统数据的相关长度的比较证实了有机成分的疏水部分促进了微异液体结构的形成,而亲水部分在这方面具有较小的重要性。高频限制吸收表明线性二聚体赋板之间的平衡,以促进频率范围的频率范围。由...出版

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