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Influence of surface hydrophobicity of substrates on the self-organization of chiral molecule

机译:底物表面疏水性对手性分子自组织的影响

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The interfacial-dependent self-organization of a chiral amino acid amphiphile was observed on various substrates with different surface hydrophobicity. Three kinds of organizations are induced at different substrates, which appear as helical aggregates on hydrophobic surface (e.g. highly oriented pyrolytic graphite), molecular flat layer on hydrophilic surface, (e.g. mica) and a transition state between them on silicon wafer. The strength of the interactions between the helical aggregates formed in solution and the substrate is the key factor to the self-organization of the chiral molecule. The results reported here provide insight into how the surface hydrophobicity of substrates affects the self-organization of chiral molecules.
机译:在具有不同表面疏水性的各种底物上观察到手性氨基酸两亲物的界面依赖性自组织。在不同的基底上诱导出三种组织,它们以螺旋状聚集体的形式出现在疏水性表面(例如高度取向的热解石墨)上,以分子平面层存在于亲水性表面(例如云母)上,并在硅片上呈现出它们之间的过渡态。溶液中形成的螺旋聚集体与底物之间相互作用的强度是手性分子自组织的关键因素。本文报道的结果提供了对底物表面疏水性如何影响手性分子自组织的见解。

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