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Perovskite-WS2 Nanosheet Composite Optical Absorbers on Graphene as High-Performance Phototransistors

机译:石墨烯上的钙钛矿-WS2纳米片复合光学吸收剂作为高性能光电晶体管

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摘要

High-responsivity phototransistors with a structure of perovskite-WS2 nanosheet composite optical absorber and a reduced graphene oxide (rGO) channel layer is demonstrated via a facile and low-cost solution-processing method. The WS2 nanosheets are dispersed within the perovskite matrix, forming the perovskite-WS2 bulk heterojunction (BHJ). The hybrid phototransistor exhibits excellent figures of merit including high photoresponsivity of 678.8 A/W, high specific detectivity of 4.99 × 1011 Jones, high EQE value of 2.04 × 105% and rapid response to photoswitching. The high photoresponsivity could be attributed to the WS2 nanosheets induced photo-generated electron-hole separation promotion effects due to the selective electron trapping effects in the WS2 nanosheets, together with the high carrier mobility of the rGO channel. This work provides a promising platform for constructing high-responsivity photodetectors.
机译:通过一种简便而低成本的溶液处理方法,证明了具有钙钛矿-WS2纳米片复合光吸收剂结构和氧化石墨烯(rGO)沟道层还原结构的高响应光电晶体管。 WS2纳米片分散在钙钛矿基质中,形成钙钛矿-WS2本体异质结(BHJ)。混合型光电晶体管具有优异的品质因数,包括678.8 A / W的高光敏度,4.99×10 11 Jones的高比检测率,2.04×10 5 %的高EQE值快速响应光开关。高光响应性可归因于WS2纳米片诱导的光生电子-空穴分离促进效应,这归因于WS2纳米片中的选择性电子俘获效应,以及rGO通道的高载流子迁移率。这项工作为构建高响应度光电探测器提供了一个有希望的平台。

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