首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Photodimerization and Micropatteming of Anthracene-Appended Receptors Covalently Bound to Silicon Surfaces: En Route to Write-Read-Erase Molecular Print Board
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Photodimerization and Micropatteming of Anthracene-Appended Receptors Covalently Bound to Silicon Surfaces: En Route to Write-Read-Erase Molecular Print Board

机译:蒽附加受体共价结合到硅表面的光二聚化和微图案化:在写-读-擦除分子印刷板的途中

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摘要

Anthracene-appended receptor monolayers covalently bound to hydrogen-terminated Si(111) surfaces have been prepared from attachment of an aminoalkane-substituted receptor to a preassembled acid-terminated alkyl monolayer using carbodiimide coupling. Subsequent irradiation at 350 nm of the receptor-modified surface yielded the open→ closed conversion of the grafted anthracene-appended receptor, as clearly supported by IR spectroscopy data. Grafting of the open receptor and its subsequent closing did not change significantly the surface topography, and atomic force microscopy (AFM) images showed formation of perfectly dense and homogeneous molecular films without adventitious contamination or aggregated islands. Scanning electrochemical microscopy (SECM) measurements in feedback mode using an appropriate redox mediator (i.e., 9,10-diethoxyanthracene DEA) provided clear evidence for an efficient charge transport process between grafted receptors. However, the kinetics of the mediator regeneration was faster when the receptors were under their closed form. Interestingly, light-activated switching of the anthracene-appended receptor offered the unique opportunity to pattern the surface using UV photolithography through an optical mask. After the lithographic step, the SECM image clearly showed the expected current regeneration contrast between the open and produced closed receptor micropatterns.
机译:共价键合至氢封端的Si(111)表面的蒽附加受体单层已通过使用碳二亚胺偶联将氨基链烷取代的受体连接至预先组装的酸封端的烷基单层而制得。红外光谱数据清楚地证明,随后在350 nm处对受体修饰的表面进行辐照,会产生接枝蒽后接枝的受体的开→闭转化。开放受体的接枝及其随后的闭合不会显着改变表面形貌,原子力显微镜(AFM)图像显示形成了完全致密且均质的分子膜,而没有偶然污染或聚集岛。使用适当的氧化还原介体(即9,10-二乙氧基蒽DEA)以反馈模式进行扫描电化学显微镜(SECM)测量,为移植受体之间有效的电荷传输过程提供了清晰的证据。但是,当受体处于封闭状态时,介质再生的动力学更快。有趣的是,蒽类受体的光激活转换为通过光学掩模通过UV光刻技术在表面上形成图案提供了独特的机会。光刻步骤之后,SECM图像清楚地显示了打开和关闭的接收器微图案之间的预期电流再生对比度。

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