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Light-enhanced liquid-phase exfoliation and current photoswitching in graphene–azobenzene composites

机译:石墨烯-偶氮苯复合材料的光增强液相剥离和电流光开关

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摘要

Multifunctional materials can be engineered by combining multiple chemical components, each conferring a well-defined function to the ensemble. Graphene is at the centre of an ever-growing research effort due to its combination of unique properties. Here we show that the large conformational change associated with the trans–cis photochemical isomerization of alkyl-substituted azobenzenes can be used to improve the efficiency of liquid-phase exfoliation of graphite, with the photochromic molecules acting as dispersion-stabilizing agents. We also demonstrate reversible photo-modulated current in two-terminal devices based on graphene–azobenzene composites. We assign this tuneable electrical characteristics to the intercalation of the azobenzene between adjacent graphene layers and the resulting increase in the interlayer distance on (photo)switching from the linear trans-form to the bulky cis-form of the photochromes. These findings pave the way to the development of new optically controlled memories for light-assisted programming and high-sensitive photosensors.
机译:可以通过组合多种化学成分来设计多功能材料,每种成分都可以为整体赋予明确的功能。石墨烯由于其独特的性能而成为不断发展的研究工作的中心。在这里,我们表明,与烷基取代的偶氮苯的反式-顺式光化学异构化相关的大构象变化可用于提高石墨的液相剥落效率,其中光致变色分子充当分散稳定剂。我们还演示了基于石墨烯-偶氮苯复合材料的两端器件中可逆的光调制电流。我们将这种可调节的电特性分配给相邻石墨烯层之间的偶氮苯插层,以及由此导致的光致变色剂从(线性)转变为大体积顺式(光)转换时的层间距离增加。这些发现为光辅助编程和高灵敏度光电传感器的新型光控存储器的开发铺平了道路。

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