Zhong Zhipeng, Zhuang Yezhao, Cheng Xin, Zheng Jingtao, Yang Qianyi, Li Xiang, Chen Yan, Shen Hong, Lin Tie, Shi Wu, Meng Xiangjian, Chu Junhao, Huang Hai, Wang Jianlu
State Key Laboratory of Photovoltaic Science and Technology, Shanghai Frontiers Science Research Base of Intelligent Optoelectronic and Perception, Institute of Optoelectronics, and Department of Materials Science, Fudan University, Shanghai, China.
State Key Laboratory of Infrared Physics, Shanghai Institute of Technical Physics, Chinese Academy of Sciences, Shanghai, China.
Nat Commun. 2025 Aug 2;16(1):7096. doi: 10.1038/s41467-025-62563-7.
The human eye is highly advanced but limited by color blindness and poor adaptation to changing light. Artificial photodetectors attempt to mimic vision but often require complex processing to overcome these limitations. Thus, developing photodetectors that complement human vision is crucial to overcoming these limitations. Here, we report a CuInPS-based photodetector array with tunable photoresponse for in-sensor image processing, directly complementing human vision. Through ionic and electronic tuning, the photodetector shows both positive and negative correlations with light intensity and wavelength. It enhances signal-to-background ratio by 880% and suppresses noise by 1,170 times, allowing effective detection of weak signals under strong illumination. Moreover, taking advantage of the distinct photoresponse to red and green light, the photodetector could improve the contrast between red and green patterns up to 43%, offering potential aid for red-green color blindness. This work presents a vision-enhancing photodetector capable of compensating for human visual deficiencies without external computation.
人眼高度发达,但受色盲和对变化光线适应能力差的限制。人工光电探测器试图模仿视觉,但通常需要复杂的处理来克服这些限制。因此,开发能够补充人类视觉的光电探测器对于克服这些限制至关重要。在此,我们报告了一种基于CuInPS的光电探测器阵列,其具有可调光响应,用于传感器内图像处理,可直接补充人类视觉。通过离子和电子调谐,该光电探测器与光强度和波长呈现正相关和负相关。它将信噪比提高了880%,并将噪声抑制了1170倍,从而能够在强光照射下有效检测微弱信号。此外,利用对红光和绿光的不同光响应,该光电探测器可将红色和绿色图案之间的对比度提高多达43%,为红绿色盲提供了潜在帮助。这项工作展示了一种无需外部计算就能补偿人类视觉缺陷的视觉增强光电探测器。