响应度
光电子学
材料科学
光探测
异质结
光电探测器
半导体
比探测率
光电二极管
量子效率
有机半导体
紫外线
量子点
作者
Kaixuan Chen,Xuliang Zhang,Pingan Chen,Jing Guo,Mai He,Yanqin Chen,Xincan Qiu,Yu Liu,Huajie Chen,Zebing Zeng,Xiao Wang,Jianyu Yuan,Wanli Ma,Lei Liao,Thuc‐Quyen Nguyen,Yuanyuan Hu
标识
DOI:10.1002/advs.202105856
摘要
Planar heterojunctions (PHJs) are fundamental building blocks for construction of semiconductor devices. However, fabricating PHJs with solution-processable semiconductors such as organic semiconductors (OSCs) is a challenge. Herein, utilizing the orthogonal solubility and good wettability between CsPbBr3 perovskite quantum dots (PQDs) and OSCs, fabrication of solution-processed PQD/OSC PHJs are reported. The phototransistors based on bilayer PQD/PDVT-10 PHJs show responsivity up to 1.64 × 104 A W-1 , specific detectivity of 3.17 × 1012 Jones, and photosensitivity of 5.33 × 106 when illuminated by 450 nm light. Such high photodetection performance is attributed to efficient charge dissociation and transport, as well as the photogating effect in the PHJs. Furthermore, the tri-layer PDVT-10/PQD/Y6 PHJs are used to construct photodiodes working in self-powered mode, which exhibit broad range photoresponse from ultraviolet to near-infrared, with responsivity approaching 10-1 A W-1 and detectivity over 106 Jones. These results present a convenient and scalable production processes for solution-processed PHJs and show their great potential for optoelectronic applications.
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