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Coupled molecular switching processes in ordered mono- and multilayers of stimuli-sesponsive rotaxanes on gold surfaces

机译:在有序的单层和多层激发 - 金表面上的响应性旋转异构体上进行分子转换过程

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摘要

Interfaces provide the structural basis for function as, for example, encountered in nature in the membrane-embedded photosystem or in technology in solar cells. Synthetic functional multilayers of molecules cooperating in a coupled manner can be fabricated on surfaces through layer-by-layer self-assembly. Ordered arrays of stimulus-responsive rotaxanes undergoing well-controlled axle shuttling are excellent candidates for coupled mechanical motion. Such stimulus-responsive surfaces may help integrate synthetic molecular machines in larger systems exhibiting even macroscopic effects or generating mechanical work from chemical energy through cooperative action. The present work demonstrates the successful deposition of ordered mono- and multilayers of chemically switchable rotaxanes on gold surfaces. Rotaxane mono- and multilayers are shown to reversibly switch in a coupled manner between two ordered states as revealed by linear dichroism effects in angle-resolved NEXAFS spectra. Such a concerted switching process is observed only when the surfaces are well packed, while less densely packed surfaces lacking lateral order do not exhibit such effects
机译:界面为功能提供了结构基础,例如,在嵌入式膜光系统中或在太阳能电池技术中自然会遇到的功能。可以通过逐层自组装在表面上制造以偶联方式协同作用的分子的合成功能多层。受到良好控制的轴穿梭的刺激响应轮烷的有序阵列是耦合机械运动的极佳候选者。这样的刺激响应表面可以帮助将合成分子机器整合到更大的系统中,从而表现出甚至宏观的效果或通过化学作用通过协同作用产生机械功。本工作证明了有序单层和多层化学可转换轮烷在金表面上的成功沉积。如角度分辨的NEXAFS光谱中的线性二色性效应所揭示,轮烷的单层和多层显示出在两个有序状态之间可逆耦合切换。仅当表面包装得很好时,才能观察到这种协调的切换过程,而缺少侧向排列的密度较小的表面则不会表现出这种效果。

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