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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Monolayer Formation on Silicon and Mica Surfaces Rearranged from N-Hexadecanoyl-L-alanine Supramolecular Structures
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Monolayer Formation on Silicon and Mica Surfaces Rearranged from N-Hexadecanoyl-L-alanine Supramolecular Structures

机译:从N-十六烷酰基-L-丙氨酸超分子结构重排的硅和云母表面上的单层形成

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摘要

The rearrangements of N-hexadecanoyl-L-alanine supramolecular structures in water to form monolayers on silicon and mica surfaces have been investigated using atomic force microscopy. It is the first time that such a monolayer with the polar groups on the solid surface and the alkyl chains up is obtained through a rational molecular design. The monolayer formation results from the strong interaction between the molecular headgroups and the surface, the intermolecular hydrogen bonding interaction via a six-membered ring structure in the case of silicon surfaces, and the additional attractive force in the case of mica surfaces. The anisotropic and dendritic growth structures, clearly observed for the monolayers rearranged on mica surface, are indicative of a homochiral effect. The differences in height and morphology of the monolayers on the two types of surfaces are considered to be relevant to the surface roughness and to the interactions between the molecules and the surface.
机译:已使用原子力显微镜研究了水中N-十六烷酰基-L-丙氨酸超分子结构的重排以在硅和云母表面形成单层。这是第一次通过合理的分子设计获得具有在固体表面上的极性基团和烷基链的单层。单层形成是由于分子头基与表面之间的强相互作用,硅表面情况下通过六元环结构的分子间氢键相互作用以及云母表面情况下的附加吸引力所致。对于在云母表面重排的单分子层,清楚观察到的各向异性和树枝状生长结构表明是同手性作用。两种类型表面上单分子层的高度和形态差异被认为与表面粗糙度以及分子与表面之间的相互作用有关。

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