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通过使用化学图案化的印章进行化学转移印刷来修饰表面。

Modification of surfaces by chemical transfer printing using chemically patterned stamps.

机构信息

Organic Chemistry Institute and Center for Nanotechnology, Westfälische Wilhelms-Universität Münster, Corrensstrasse 40, 48149 Münster, Germany.

出版信息

Langmuir. 2013 Feb 26;29(8):2692-9. doi: 10.1021/la305024a. Epub 2013 Feb 13.

Abstract

The preparation of well-defined molecular monolayers and their patterning on the microscale and nanoscale are key aspects of surface science and chemical nanotechnology. In this article, we describe the modification of amine-functionalized surfaces using a new type of contact printing based on chemically patterned, flat PDMS stamps. The stamps have discrete areas with surface-bond tetrafluorophenol (TFP) groups, which allow the attachment of carboxylic acids in the presence of coupling agents such as diisopropylcarbodiimide (DIC). The generated active esters can be reacted by placing the stamps in contact with amine-functionalized surfaces. The process leads to the transfer of acyl residues from the stamp to the substrate and therefore to a covalent attachment. Patterning occurs because of the fact that reaction and transfer take place only in areas with TFP groups present on the stamp surface. Different types of amine-decorated surfaces were successfully modified, and the transfer was visualized by fluorescence microscopy. To the best of our knowledge, the covalent transfer printing (CTP) of an immobilized molecular monolayer from one surface to another surface is unprecedented.

摘要

制备具有明确分子单层结构的物质,并在微观和纳米尺度上对其进行图案化,是表面科学和化学纳米技术的关键方面。在本文中,我们描述了使用基于化学图案化的新型接触印刷技术对胺功能化表面进行修饰,该技术使用具有离散区域的平整 PDMS 印章,这些区域具有表面键合的四氟苯酚 (TFP) 基团,允许在偶联剂(如二异丙基碳二亚胺 (DIC))存在的情况下附着羧酸。在将印章与胺功能化表面接触时,可以使生成的活性酯进行反应。该过程会导致酰基残基从印章转移到基底上,从而实现共价键合。图案化是因为反应和转移仅在印章表面存在 TFP 基团的区域中发生。成功地修饰了不同类型的胺修饰表面,并通过荧光显微镜观察到了转移情况。据我们所知,将固定的分子单层从一个表面共价转移印刷(CTP)到另一个表面是前所未有的。

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