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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Optoelectronic Properties of Self-Assembled Nanostructures of Polymer Functionalized Polythiophene and Graphene
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Optoelectronic Properties of Self-Assembled Nanostructures of Polymer Functionalized Polythiophene and Graphene

机译:聚合物官能化聚噻吩和石墨烯自组装纳米结构的光电性能

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摘要

In this Feature Article, we discuss the variation of optoelectronic properties with the aggregation style of polythiophene (PT) graft copolymers and polymer-modified graphene systems. Grafting of flexible polymers on a PT chain exhibits several self-organized patterns under various conditions, causing different optical and electronic properties, arising from the different conformational states of the conjugated chain. Graphene, a zero band gap material, is functionalized with polymers both covalently and noncovalently to create a finite band gap importing new optoelectronic properties. The polymer-triggered self-assembled nanostructures of PT and graphene-based materials bring unique optical/ electronic properties suitable for sensing toxic ions, nitroaromatics, and surfactants, for drug delivery, and also for fabricating molecular logic gates, electronic rectifiers, photocurrent devices, etc.
机译:在该特征文章中,我们讨论了具有聚噻吩(PT)接枝共聚物和聚合物改性石墨烯系统的聚集风格的光电性能的变化。 Pt链上的柔性聚合物的接枝在各种条件下表现出几种自组织图案,从而引起不同的光学和电子性质,从共轭链的不同构象状态产生。 石墨烯是零带隙材料,用共价和非共价的聚合物官能化,以产生进口新的光电性能的有限带隙。 PT和石墨烯的材料的聚合物触发的自组装纳米结构具有适合于传感毒性离子,硝基甲族学和表面活性剂的独特光学/电子性质,用于药物递送,以及用于制造分子逻辑栅极,电子整流器,光电流器件, 等等。

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