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在烷硫醇单层中创建有利于定向有机光反应的有利几何形状。

Creating favorable geometries for directing organic photoreactions in alkanethiolate monolayers.

机构信息

California NanoSystems Institute and Department of Chemistry and Biochemistry, University of California, Los Angeles, Los Angeles, CA 90095, USA.

出版信息

Science. 2011 Mar 11;331(6022):1312-5. doi: 10.1126/science.1200830.

Abstract

The products of photoreactions of conjugated organic molecules may be allowed by selection rules but not observed in solution reactions because of unfavorable reaction geometries. We have used defect sites in self-assembled alkanethiolate monolayers on gold surfaces to direct geometrically unfavorable photochemical reactions between individual organic molecules. High conductivity and stochastic switching of anthracene-terminated phenylethynylthiolates within alkanethiolate monolayers, as well as in situ photochemical transformations, have been observed and distinguished with the scanning tunneling microscope (STM). Ultraviolet light absorbed during imaging increases the apparent heights of excited molecules in STM images, a direct manifestation of probing electronically excited states.

摘要

光化学反应产物可能受到选择规则的允许,但由于反应几何形状不利,在溶液反应中观察不到。我们使用金表面自组装烷硫醇单层中的缺陷位来引导单个有机分子之间几何不利的光化学反应。芘末端苯乙炔硫醇盐在烷硫醇单层中和在原位的光化学转化已被观察到,并通过扫描隧道显微镜(STM)进行了区分。成像过程中吸收的紫外光会增加 STM 图像中激发分子的表观高度,这是探测电子激发态的直接表现。

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