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基于 DNA 折纸术的分子光电调制器的构建。

Construction of a DNA Origami Based Molecular Electro-optical Modulator.

机构信息

Department of Chemistry , New York University , New York , New York 10003 , United States.

出版信息

Nano Lett. 2018 Mar 14;18(3):2112-2115. doi: 10.1021/acs.nanolett.8b00332. Epub 2018 Feb 16.

Abstract

An electro-optical modulator was constructed using a DNA nanostructure scaffold with oligomers of poly(phenylenevinylene) and polyaniline. A molecular device containing one each of the functional molecules was assembled in a DNA origami. The constructs formed an "X" shape and were visualized by atomic force microscopy. In response to redox reconfiguration, the device reversibly altered fluorescence signal output. This molecular self-assembly strategy provides opportunities to make unique material composites that are difficult to achieve by blending. The strategy offers a "plug and play" format that may lead to many new functions.

摘要

利用带有聚对苯乙炔和聚苯胺低聚物的 DNA 纳米结构支架构建了电光调制器。在 DNA 折纸中组装了一个包含每个功能分子的分子器件。构建体形成“X”形状,并通过原子力显微镜进行可视化。响应氧化还原重配置,该器件可逆地改变荧光信号输出。这种分子自组装策略为制造独特的复合材料提供了机会,而这些复合材料通过混合很难实现。该策略提供了一种“即插即用”的格式,可能会带来许多新功能。

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