非导电表面上轮烷功能化酸端自组装硅氧烷单层膜- XPS, AFM和TRF

M. Lubomska, Oksana Karban, A. Pugžlys, E. Kay, J. Wong, David A. Leigh, Petra Rudolf
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引用次数: 0

摘要

机械互锁的分子,如轮烷,因其在分子尺度装置中的潜力而令人着迷。轮烷,刺激反应的“分子穿梭体”是由大环“头”通过笨重的“塞子”锁定在线性“线”上的分子。外部刺激(如光、电子、热、pH值、环境极性等)可诱导大周期的大幅度运动。虽然轮烷的溶液化学已被广泛探索,但对这些物种的表面化学的研究仅限于少数例子。本文报道了轮烷在石英和氧化硅/Si(110)上自组装单层上的表面形态和包装的详细直接信息,并进行了光物理研究
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rotaxane Functionalized Acid-Terminated Self-Assembled Siloxane Monolayers on Non-Conducting Surfaces - XPS, AFM and TRF
Mechanically interlocked molecules such as rotaxanes are fascinating for their potential in molecular-scale devices. Rotaxane, stimuli-responsive "molecular shuttles" are molecules where a macrocyclic "bead" is locked onto a linear "thread" by bulky "stoppers". Large amplitude motion of the macrocycle can be induced by external stimuli (e.g. light, electrons, heat, pH, polarity of the environment etc.). While the solution chemistry of rotaxanes has been explored extensively, the study of the surface chemistry of these species has been limited to a few examples. Here we report detailed direct information on the surface morphology and the packing of rotaxane on self-assembled monolayer on quartz and silicon oxide/Si(110) followed by the photophysical studies
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