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利用光在多组分体系中诱导能量和电子转移或分子运动。

Using light to induce energy and electron transfer or molecular motions in multicomponent systems.

作者信息

Ballardini Roberto, Credi Alberto, Gandolfi Maria Teresa, Marchioni Filippo, Silvi Serena, Venturi Margherita

机构信息

Istituto ISOF-CNR, via Gobetti 101, 40129, Bologna, Italy.

出版信息

Photochem Photobiol Sci. 2007 Apr;6(4):345-56. doi: 10.1039/b613411d. Epub 2007 Feb 12.

Abstract

Light-induced processes are at the basis of fundamental natural phenomena as well as of a variety of applications. Since the functions that can arise from the interaction between light and matter depend on the degree of complexity and organization of the receiving 'matter', the research on these processes has progressively moved from molecular to supramolecular (multicomponent) systems, thereby originating the field of supramolecular photochemistry. In this context, examples of photochemical molecular devices and machines--that is, multicomponent chemical systems capable to perform specific functions under light stimulation--have been developed. Here we report examples of molecular devices in solution, where light is employed (i) to create and transport electronic energy, (ii) to displace electrons, and (iii) to set molecular components in motion, mimicking the operation of mechanical machines and motors. These studies are of interest not only for increasing the basic understanding and testing of current theoretical treatments of photoinduced processes but also eventually for the growth of nanoscience.

摘要

光诱导过程是基本自然现象以及各种应用的基础。由于光与物质相互作用所产生的功能取决于接收“物质”的复杂程度和组织程度,因此对这些过程的研究已逐渐从分子体系转向超分子(多组分)体系,从而开创了超分子光化学领域。在这种背景下,已经开发出了光化学分子器件和机器的实例——即能够在光刺激下执行特定功能的多组分化学体系。在此,我们报告溶液中分子器件的实例,其中光被用于(i)产生和传输电子能量,(ii)移动电子,以及(iii)使分子组分运动,模仿机械机器和马达的运作。这些研究不仅对于增进对光诱导过程当前理论处理方法的基本理解和测试具有重要意义,而且最终对于纳米科学的发展也具有重要意义。

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