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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Crumpled graphene prepared by a simple ultrasonic pyrolysis method for fast photodetection
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Crumpled graphene prepared by a simple ultrasonic pyrolysis method for fast photodetection

机译:通过简单的超声波热解法制备皱巴巴的石墨烯,用于快速光电检测

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In the past decades, graphene has attracted much attention as the host material of photodetectors (PDs), owing to its fascinating mechanical property, ultrahigh carrier mobility and remarkable optical transparency. However, the intrinsic low light absorption of graphene affects its comprehensive application in PDs. Therefore, graphene-based PDs research has focused on hybrid system and optimized graphene structures to enhance photoabsorption. In order to combine the advantages of both approaches, we successfully prepared crumpled reduced graphene oxide (C-rGO) for PDs by a simple ultrasonic pyrolysis method. Through this rapid, one-step capillary-driven route, C-rGO and C-rGO/(ZnO, PbS) composite films can be easily deposited on arbitrary substrates (PET, glass, Al2O3 ceramic and paper). Interestingly, the unique C-rGO PDs shows superior stability and fast transient photocurrent response (rise/decay time of 189/189 ms). Furthermore, by incorporating ZnO and PbS nanoparticles to enhance light absorption, the crumpled hybrid nanostructure PDs demonstrate about four times increased photocurrents and broad-band (UV-Vis-NIR) photodetection features with R of 0.12 A/W. Such crumpled C-rGO-based PDs hold great potentials for future optoelectronic applications, and the ultrasonic pyrolysis method could open a new way for engineering novel nanostructured thin films with high-performance photodetection. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在过去的几十年中,由于其迷人的机械性能,超高载流动性和显着的光学透明性,石墨烯作为光电探测器(PDS)的主体材料引起了许多关注。然而,石墨烯的固有低光吸收影响其在Pds中的综合应用。因此,基于石墨烯的PDS研究专注于混合系统和优化的石墨烯结构,以增强光吸收。为了结合两种方法的优点,我们通过简单的超声波热解方法成功地为PDS制备了皱折的石墨烯氧化物(C-RGO)。通过这种快速,一步毛细管驱动的路线,C-RGO和C-RGO /(ZnO,PBS)复合薄膜可以容易地沉积在任意底物上(PET,玻璃,Al2O3陶瓷和纸)。有趣的是,独特的C-RGO PDS显示出卓越的稳定性和快速的瞬态光电流响应(上升/衰减时间为189/189毫秒)。此外,通过掺入ZnO和PBS纳米颗粒以增强光吸收,皱折的杂合纳米结构PDS展示了增加的光电流和宽带(UV-Vis-NIR)光电检测特征的增加约4倍,R为0.12a / w。这种皱巴巴的基于C-RGO的PDS具有巨大的未来光电应用的潜力,而超声波热解方法可以为具有高性能光电探测的工程新型纳米结构薄膜开辟一种新的方式。 (c)2017 Elsevier Ltd.保留所有权利。

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