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Chemical Surface Modification of Self-Assembled Monolayers by Radical Nitroxide Exchange Reactions

机译:自由基一氧化氮交换反应对自组装单分子膜的化学表面改性

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This article describes the application of nitroxide exchange reactions of surface-bound alkoxyamines as a tool for reversible chemical modification of self-assembled monolayers (SAMs). This approach is based on radical chemistry, which allows for introduction of various functional groups and can be used to reversibly introduce functionalities at surfaces. To investigate the scope of this surface chemistry, alkoxyamines with different functionalities were synthesized and were then applied to the immobilization of, for example, dyes, sugars, or biotin. Surface analysis was carried out by contact angle, X-ray photoelectron spectroscopy, and fluorescence microscopy measurements. The results show that this reaction is highly efficient, reversible, and mild and allows for immobilization of various sensitive functional groups. In addition, Langmuir–Blodgett lithography was used to generate structured SAMs. Site-selective immobilization of a fluorescent dye could be achieved by nitroxide exchange reactions.
机译:本文介绍了表面结合的烷氧基胺的氮氧化物交换反应作为自组装单分子层(SAMs)可逆化学修饰的工具的应用。该方法基于自由基化学,该自由基化学允许引入各种官能团,并可用于可逆地在表面引入官能团。为了研究这种表面化学的范围,合成了具有不同官能度的烷氧基胺,然后将其应用于例如染料,糖或生物素的固定化。通过接触角,X射线光电子能谱和荧光显微镜测量进行表面分析。结果表明,该反应是高效的,可逆的和温和的,并且允许固定各种敏感的官能团。此外,Langmuir-Blodgett光刻用于生成结构化SAM。荧光染料的定点固定化可以通过氮氧化物交换反应实现。

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