光探测
材料科学
光电子学
光电二极管
比探测率
量子效率
光敏性
载流子
光活性层
光电探测器
暗电流
光激发
异质结
聚合物太阳能电池
物理
激发态
核物理学
太阳能电池
作者
Yong Gao,Ya Sha Yi,Xinwei Wang,Hong Meng,Dangyuan Lei,Xue‐Feng Yu,Paul K. Chu,Jia Li
标识
DOI:10.1002/adma.201900763
摘要
Abstract The interfacial charge effect is crucial for high‐sensitivity organic phototransistors (OPTs), but conventional layered and hybrid OPTs have a trade‐off in balancing the separation, transport, and recombination of photogenerated charges, consequently impacting the device performance. Herein, a novel hybrid‐layered phototransistor (HL‐OPT) is reported with significantly improved photodetection performance, which takes advantages of both the charge‐trapping effect (CTE) and efficient carrier transport. The HL‐OPT consisting of 2,7‐dioctyl[1]benzothieno[3,2‐b][1]benzothiophene (C8‐BTBT) as conduction channel, C8‐BTBT:[6,6]‐phenyl‐C 61 ‐butyric acid methyl ester (PC 61 BM) bulk heterojunction as photoactive layer, and sandwiched MoO 3 interlayer as a charge‐transport interlayer exhibits outstanding photodetection characteristics such as a photosensitivity ( I light / I dark ) of 2.9 × 10 6 , photoresponsivity ( R ) of 8.6 × 10 3 A W −1 , detectivity ( D* ) of 3.4 × 10 14 Jones, and external quantum efficiency of 3 × 10 6 % under weak light illumination of 32 µW cm −2 . The mechanism and strategy described here provide new insights into the design and optimization of high‐performance OPTs spanning the ultraviolet and near infrared (NIR) range as well as fundamental issues pertaining to the electronic and photonic properties of the devices.
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