暗视
适应(眼睛)
光电子学
材料科学
夜视
明视
调制(音乐)
晶体管
光激发
光学
电压
物理
视网膜
激发
量子力学
声学
作者
Xiangkai Luo,Wei Deng,Fangming Sheng,Xiaobin Ren,Zishen Zhao,Chun Zhao,Yang Liu,Jialin Shi,Zeke Liu,Xiujuan Zhang,Jiansheng Jie
出处
期刊:ACS Nano
[American Chemical Society]
日期:2024-05-14
卷期号:18 (21): 13726-13737
标识
DOI:10.1021/acsnano.4c01663
摘要
Human vision excels in perceiving nighttime low illumination due to biological feedforward adaptation. Replicating this ability in biomimetic vision using solid-state devices has been highly sought after. However, emulating scotopic adaptation, entailing a confluence of efficient photoexcitation and dynamic carrier modulation, presents formidable challenges. Here, we demonstrate a low-power and bionic scotopic adaptation transistor by coupling a light-absorption layer and an electron-trapping layer at the bottom of the semiconducting channel, enabling simultaneous achievement of efficient generation of free photocarriers and adaptive carrier accumulation within a single device. This innovation empowers our transistor to exhibit sensitivity-potentiated characteristics after adaptation, detecting scotopic-level illumination (0.001 lx) with exceptional photosensitivity up to 103 at low voltages below 2 V. Moreover, we have successfully replicated diverse scotopic vision functions, encompassing time-dependent visual threshold enhancement, light intensity-dependent adaptation index, imaging contrast enhancement for nighttime low illumination imaging, opening an opportunity for artificial night vision.
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