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Programmed self-assembly of large π-conjugated molecules into electroactive one-dimensional nanostructures

机译:大π共轭分子的程序化自组装成电活性一维纳米结构

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摘要

Electroactive one-dimensional (1D) nano-objects possess inherent unidirectional charge and energy transport capabilities along with anisotropic absorption and emission of light, which are of great advantage for the development of nanometer-scale electronics and optoelectronics. In particular, molecular nanowires formed by self-assembly of π-conjugated molecules attract increasing attention for application in supramolecular electronics. This review introduces recent topics related to electroactive molecular nanowires. The nanowires are classified into four categories with respect to the electronic states of the constituent molecules: electron donors, acceptors, donor–acceptor pairs and miscellaneous molecules that display interesting electronic properties. Although many challenges still remain for practical use, state-of-the-art 1D supramolecular nanomaterials have already brought significant advances to both fundamental chemical sciences and technological applications.
机译:电活性一维(1D)纳米物体具有固有的单向电荷和能量传输能力以及各向异性的光吸收和发射,这对于纳米级电子学和光电子学的发展具有极大的优势。特别地,通过π共轭分子的自组装形成的分子纳米线在超分子电子学中的应用引起了越来越多的关注。这篇评论介绍了有关电活性分子纳米线的最新话题。就组成分子的电子状态而言,纳米线分为四类:电子供体,受体,供体-受体对以及显示出有趣电子特性的其他分子。尽管在实际应用中仍然存在许多挑战,但是最先进的一维超分子纳米材料已经在基础化学科学和技术应用方面取得了重大进展。

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