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使用荧光显微镜观察自组装单分子层修饰金电极的选择性还原解吸。

Selective reductive desorption of a SAM-coated gold electrode revealed using fluorescence microscopy.

作者信息

Shepherd Jeff L, Kell Arnold, Chung Emily, Sinclar Chad W, Workentin Mark S, Bizzotto Dan

机构信息

Department of Chemistry, Advanced Materials & Process Engineering Laboratory (AMPEL), University of British Columbia, Vancouver, BC, Canada.

出版信息

J Am Chem Soc. 2004 Jul 7;126(26):8329-35. doi: 10.1021/ja0494095.

Abstract

The reductive desorption of a self-assembled monolayer (SAM) of a fluorescent thiol molecule (BodipyC10SH) from Au was characterized using electrochemistry and epi-fluorescence microscopy. Molecular luminescence is quenched near a metal surface, so fluorescence was only observed for molecules reductively desorbed and then separated from the electrode surface. Fluorescence imaging showed that reductive desorption was selective, with desorption occurring from different regions of the Au electrode depending on the extent of the negative potential excursion. When desorbed, the molecules were sufficiently mobile, diffusing away from the electrode surface, thereby preventing oxidative readsorption. At sufficiently negative desorption potentials, all of the thiol was desorbed from the electrode surface, resulting in fluorescence at the air/solution interface. The selective removal of the thiol monolayer from distinct regions was correlated to features on the electrode surface and was explained through potential-dependent interfacial energies. This in situ electrofluorescence microscopy technique may be useful in sensor development.

摘要

利用电化学和落射荧光显微镜对荧光硫醇分子(BodipyC10SH)自组装单层膜(SAM)从金表面的还原解吸进行了表征。分子发光在金属表面附近会猝灭,因此仅对还原解吸并随后与电极表面分离的分子观察到荧光。荧光成像表明还原解吸具有选择性,根据负电位偏移的程度,解吸发生在金电极的不同区域。解吸时,分子具有足够的流动性,从电极表面扩散开,从而防止氧化再吸附。在足够负的解吸电位下,所有硫醇从电极表面解吸,导致在空气/溶液界面处产生荧光。从不同区域选择性去除硫醇单层与电极表面的特征相关,并通过电位依赖的界面能进行了解释。这种原位电荧光显微镜技术可能在传感器开发中有用。

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