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Strong water-mediated friction asymmetry and surface dynamics of zwitterionic solids at ambient conditions: L-alanine as a case study

机译:两性离子固体在环境条件下的强水介导的摩擦不对称性和表面动力学:以L-丙氨酸为例

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摘要

Water molecules strongly interact with freshly cleaved (011) surfaces of L-alanine single crystals at low relative humidity (below 10) promoting diffusion of L-alanine molecules. Species mobility is enhanced above ~40 leading to the formation of two-dimensional islands with long-range order through Ostwald ripening. Scanning force microscopy experiments reveal that both, islands and terraces, are identical in nature (composition and crystallographic structure) but a relevant friction asymmetry appearing upon water-surface interaction evidences that orientation dependent properties exist between them at the molecular level. We interpret this observation as due to water incorporation in the topmost surface crystal structure. Eventually, for high humidity values, surface dissolution and roughening occur.
机译:水分子在较低的相对湿度(低于10)下与L-丙氨酸单晶的新裂解表面(011)强烈相互作用,从而促进L-丙氨酸分子的扩散。物种迁移率在〜40以上时得到增强,并通过奥斯特瓦尔德(Ostwald)成熟形成了具有长程有序的二维岛。扫描力显微镜实验表明,岛和阶地在性质(组成和晶体学结构)上都是相同的,但是在水表面相互作用中出现的相关摩擦不对称性表明,在分子水平上它们之间存在取向依赖性。我们将此观察结果解释为归因于水在最表面晶体结构中的结合。最终,对于高湿度值,会发生表面溶解和粗糙化。

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