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机械诱导的分子层转换。

Mechanically Induced Switching of Molecular Layers.

机构信息

Institute of Nanotechnology and Institute of Applied Physics , Karlsruhe Institute of Technology (KIT) , 76131 Karlsruhe , Germany.

出版信息

Nano Lett. 2019 Feb 13;19(2):816-822. doi: 10.1021/acs.nanolett.8b03987. Epub 2019 Jan 29.

Abstract

Within the field of switchable surfaces, azobenzenes are an extensively studied group of molecules, known for reversibly changing conformation upon illumination with light of different wavelengths. Relying on the ability of the molecules to change properties and structure as a response to external stimuli, they have been incorporated in various devices, such as molecular switches and motors. In contrast to the well-documented switching by light irradiation, we report the discovery of mechanically triggered switching of self-assembled azobenzene monolayers, resulting in changes of surface wettability, adhesion, and friction. This mechanically induced cis-trans isomerization is triggered either locally and selectively by AFM or macroscopically by particle impact. The process is optically reversible, enabling consecutive switching cycles. Collective switching behavior was also observed, propagating from the original point of impact in a domino-like manner. Finally, local force application facilitated nondestructive and erasable nanopatterning, the cis-trans nanolithography.

摘要

在可切换表面领域中,偶氮苯是一组被广泛研究的分子,它们以在不同波长的光照射下可逆地改变构象而闻名。偶氮苯依靠分子根据外部刺激改变性质和结构的能力,被应用于各种设备中,如分子开关和马达。与文献中记录良好的光致开关相反,我们报告了自组装偶氮苯单层机械触发开关的发现,这导致了表面润湿性、附着力和摩擦的变化。这种机械诱导的顺反异构化可以通过 AFM 局部且选择性地触发,也可以通过颗粒冲击宏观地触发。该过程是光学可逆的,能够实现连续的开关循环。还观察到了集体开关行为,以类似多米诺骨牌的方式从原始撞击点传播。最后,局部力的应用促进了非破坏性和可擦除的纳米图案化,即顺反异构纳米光刻。

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