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首页> 外文期刊>Angewandte Chemie >Probing the Mineral-Water Interface with Nonlinear Optical Spectroscopy
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Probing the Mineral-Water Interface with Nonlinear Optical Spectroscopy

机译:用非线性光谱探测矿泉水界面

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摘要

The interaction between minerals and water is manifold and complex: the mineral surface can be (de)protonated by water, thereby changing its charge; mineral ions dissolved into the aqueous phase screen the surface charges. Both factors affect the interaction with water. Intrinsically molecular-level processes and interactions govern macroscopic phenomena, such as flow-induced dissolution, wetting, and charging. This realization is increasingly prompting molecular-level studies of mineral-water interfaces. Here, we provide an overview of recent developments in surface-specific nonlinear spectroscopy techniques such as sum frequency and second harmonic generation (SFG/SHG), which can provide information about the molecular arrangement of the first few layers of water molecules at the mineral surface. The results illustrate the subtleties of both chemical and physical interactions between water and the mineral as well as the critical role of mineral dissolution and other ions in solution for determining those interactions.
机译:矿物与水之间的相互作用是多种多样且复杂的:矿物表面可以被水质子化,从而改变其电荷;溶解在水相中的矿物离子屏蔽了表面电荷。这两个因素都会影响与水的相互作用。本质上,分子水平的过程和相互作用控制宏观现象,如流动诱导溶解、润湿和充电。这一认识越来越多地推动了对矿泉水界面的分子水平研究。在这里,我们概述了表面特定非线性光谱技术的最新发展,例如和频和二次谐波产生(SFG/SHG),它可以提供有关矿物表面前几层水分子的分子排列的信息。这些结果说明了水和矿物之间化学和物理相互作用的微妙性,以及矿物溶解和溶液中其他离子在确定这些相互作用方面的关键作用。

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