光电子学
材料科学
光探测
石墨烯
氧化物
光电探测器
调制(音乐)
光电二极管
可重构性
宽带
暗电流
消色差透镜
偏压
光学
飞秒
异质结
亮度
光通信
光伏
纳米线
作者
Z. Li,Jingyong Liang,Minglong Chen,Haocheng Huang,Yuhan Zhang,Qinqi Ren,Dingwei Li,Tian Sun,J Pan,Yaping Li,Lingjiao Zhang,Hanming Li,Genghui Zhang,Xiaoci Liang,Jiahui Wu,Chuan Liu,Hang Zhou
出处
期刊:ACS Nano
[American Chemical Society]
日期:2026-02-10
卷期号:20 (7): 5862-5872
标识
DOI:10.1021/acsnano.5c18429
摘要
Organic-metal oxide hybrid phototransistors (HPTs) with gate-tunable photoresponse and heterointerfacial photogating effects are promising candidates for developing reconfigurable intelligent optoelectronic systems. However, achieving reconfigurability and self-adaptability in organic-metal oxide HPTs remains a challenge. Herein, we propose a reconfigurable and self-adaptive HPT based on indium-gallium-zinc oxide and organic bulk heterojunction, capable of gate-tunable dual modes with both highly sensitive photosensing and light-intensity-adaptive bidirectional photoresponse for in-sensor image preprocessing. The photocarrier trapping dynamics at the organic-metal oxide heterointerface generate bipolar photogating effects under the synergistic modulation of gate bias and light intensity, enabling reconfigurable and self-adaptive photoresponse in organic-metal oxide HPTs. The highly sensitive photosensing mode exhibits broadband photodetection with a high dark current shot noise-limited specific detectivity over 1014 Jones. In the light-intensity-adaptive bidirectional photoresponse mode, the HPT performs self-adaptive in-sensor image denoising. This work provides physical insights into the heterointerfacial photocarrier trapping dynamics in organic-metal oxide HPTs and efficient design strategies for reconfigurable and self-adaptive biomimetic optoelectronics.
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