首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Doubling Down: Delving into the Details of Diacid Adsorption at Aqueous Surfaces
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Doubling Down: Delving into the Details of Diacid Adsorption at Aqueous Surfaces

机译:加倍:深入研究水表面的二酸吸附细节

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摘要

The behavior of complex interfacial systems is central to an ever-increasing number of applications. Vibrational sum frequency (VSF) spectroscopy is a powerful technique for obtaining surface specific structural information. The coherent nature of VSF that provides surface specificity, however, also creates difficulty in spectral interpretation especially as the system complexity increases. Computations of VSF spectra shed light on the molecular level source of the experimental VSF signal, allowing for the analysis of more complicated systems. Unfortunately, the majority of calculations of VSF spectra look at the response of the solvent or of rigid molecules and therefore often poorly reflect the experimental environment of most VSF spectroscopic measurements. In this work, flexible solute molecules at interfaces are investigated by doubling down, obtaining and comparing experimental and theoretical spectra, to determine a more accurate computational treatment. The surface behavior and VSF spectra of glutaric acid and adipic acid at the air/water interface are determined experimentally and calculated using a combination of classical molecular dynamics and density functional theory. Both diacids are found to be surface active. At high concentrations, glutaric acid forms dimers altering its VSF response and acidic properties. Calculated VSF spectra are found to be sensitive to vibrational mode frequencies, with ordering and spacing affecting relative intensities, as well as molecular conformation. A proper description requires consideration of multiple conformers and anharmonic effects on the molecular vibrational energies.
机译:复杂界面系统的行为对于不断增长的应用程序至关重要。振动和频(VSF)光谱学是一种获得表面特定结构信息的强大技术。但是,提供表面特异性的VSF的相干特性也给光谱解释带来了困难,尤其是随着系统复杂性的增加。 VSF光谱的计算为实验VSF信号的分子水平来源提供了亮点,从而可以分析更复杂的系统。不幸的是,大多数VSF光谱的计算都着眼于溶剂或刚性分子的响应,因此通常不能很好地反映大多数VSF光谱测量的实验环境。在这项工作中,通过加倍研究,获得并比较实验和理论光谱来研究界面处的柔性溶质分子,以确定更准确的计算方法。实验确定了戊二酸和己二酸在空气/水界面的表面行为和VSF光谱,并结合经典分子动力学和密度泛函理论进行了计算。发现两种二酸均具有表面活性。在高浓度下,戊二酸会形成二聚体,从而改变其VSF反应和酸性。发现计算出的VSF光谱对振动模式频率敏感,其排序和间距影响相对强度以及分子构象。适当的描述需要考虑多种构象异构体以及对分子振动能的非谐效应。

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