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金属表面的光致和热致分子开关过程。

Optically and thermally induced molecular switching processes at metal surfaces.

机构信息

Freie Universität Berlin, Fachbereich Physik, Arnimallee 14, D-14195 Berlin, Germany.

出版信息

J Phys Condens Matter. 2012 Oct 3;24(39):394001. doi: 10.1088/0953-8984/24/39/394001. Epub 2012 Sep 11.

Abstract

Using light to control the switching of functional properties of surface-bound species is an attractive strategy for the development of new technologies with possible applications in molecular electronics and functional surfaces and interfaces. Molecular switches are promising systems for such a route, since they possess the ability to undergo reversible changes between different molecular states and accordingly molecular properties by excitation with light or other external stimuli. In this review, recent experiments on photo- and thermally induced molecular switching processes at noble metal surfaces utilizing two-photon photoemission and surface vibrational spectroscopies are reported. The investigated molecular switches can either undergo a trans-cis isomerization or a ring opening-closure reaction. Two approaches concerning the connection of the switches to the surface are applied: physisorbed switches, i.e. molecules in direct contact with the substrate, and surface-decoupled switches incorporated in self-assembled monolayers. Elementary processes in molecular switches at surfaces, such as excitation mechanisms in photoisomerization and kinetic parameters for thermally driven reactions, which are essential for a microscopic understanding of molecular switching at surfaces, are presented. This in turn is needed for designing an appropriate adsorbate-substrate system with the desired switchable functionality controlled by external stimuli.

摘要

利用光来控制表面结合物种的功能性质的转换是开发新技术的一种有吸引力的策略,这些新技术可能应用于分子电子学和功能表面和界面。分子开关是这种途径的有前途的系统,因为它们具有通过光或其他外部刺激的激发,在不同的分子状态和相应的分子性质之间进行可逆变化的能力。在这篇综述中,报告了利用双光子光电子发射和表面振动光谱学,在贵金属表面上光和热诱导的分子开关过程的最新实验。所研究的分子开关可以经历顺反异构化或开环-闭环反应。应用了两种关于开关与表面连接的方法:物理吸附开关,即与基底直接接触的分子,和表面解耦开关,它们被整合在自组装单层中。介绍了表面上分子开关的基本过程,例如光致异构化中的激发机制和热驱动反应的动力学参数,这些对于表面分子开关的微观理解是必要的,而这反过来又是设计具有所需可切换功能的适当吸附剂-基底系统所必需的,这些功能可以通过外部刺激来控制。

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