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首页> 外文期刊>Advanced Functional Materials >Dip-Pen Nanolithography Using the Amide-Coupling Reaction with Interchain Carboxylic Anhydride-Terminated Self-Assembled Monolayers
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Dip-Pen Nanolithography Using the Amide-Coupling Reaction with Interchain Carboxylic Anhydride-Terminated Self-Assembled Monolayers

机译:使用酰胺偶联反应与链间羧酸封端的自组装单分子膜进行浸笔纳米光刻。

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Herein we report on a new type of dip-pen nanolithography (DPN), which utilizes an interfacial organic reaction—the amide-coupling reaction—between chemically activated surfaces and amine ink molecules transferred from an atomic force microscopy tip. As a representative of the chemically activated surfaces that could react with amine compounds, we formed a self-assembled monolayer terminating in interchain carboxylic anhydride (ICA) groups on gold, and generated chemically derived nanopatterns using alkylamines as ink molecules. Amine inks showed diffusive behavior similar to thiol inks on gold in conventional DPN, and the pattern sizes were controlled by changing the tip dwell times. In addition, nanopatterns of hydrolyzed ICAs were generated by taking advantage of the participation of the water meniscus in the DPN process and the chemical nature of the ICAs.
机译:本文中,我们报道了一种新型的浸笔式纳米光刻技术(DPN),该技术利用化学活化的表面和从原子力显微镜尖端转移来的胺墨水分子之间的界面有机反应(酰胺偶联反应)。作为可以与胺化合物反应的化学活化表面的代表,我们在金上的链间羧酸酐(ICA)基团上形成了一个自组装单层,并使用烷基胺作为墨水分子生成了化学衍生的纳米图案。胺油墨在传统DPN中的扩散行为类似于硫醇油墨在金上的扩散行为,并且通过改变笔尖停留时间来控制图案尺寸。此外,通过利用水弯液面参与DPN过程和ICAs的化学性质,生成了水解ICAs的纳米图案。

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