材料科学
液晶
人造光
聚合物
视网膜
视蛋白
人工肌肉
光电子学
仿生学
视网膜
光学
纳米技术
灵活性(工程)
微尺度化学
生物相容性
光强度
仿生材料
基质(化学分析)
人工视觉
电压
数字光处理
平面的
机器视觉
夜视
生物物理学
压力(语言学)
压电
光电效应
蓝光
机械转化
偶氮苯
作者
Yumeng Jiang,Bo Peng,Jinyu Ma,Feng Pan,Jia Wei,X. S. Qin,Cheng Sun,Yanlei Yu
出处
期刊:
[Wiley]
日期:2026-01-19
卷期号:4 (2): e70030-e70030
被引量:1
摘要
Abstract Artificial photoreceptors capable of eliciting neural responses offer a promising strategy for restoring vision in individuals with retinal degenerative diseases. However, stimulating neurons under low‐intensity light remains a critical challenge, which significantly hampers their practical application. Here, a flexible arched artificial photoreceptor with strong photoelectric response under weak light is constructed by photodeformable liquid crystal polymers (LCPs) and polyvinylidene fluoride‐trifluoroethylene (P(VDF‐TrFE)). The light‐stress‐electricity conversion arising from photo‐induced stress of LCPs and the piezoelectric effect of P(VDF‐TrFE) is significantly enhanced by the arched structure, which induces stress concentration. Hence, the open‐circuit voltage reaches up to 17.51 ± 0.60 V under 8 mW cm −2 light irradiation, which is 21 times higher than that of the planar structure (0.79 V), with a 10‐fold reduction in light intensity. By analyzing the voltage of units, the pixelated matrix of artificial photoreceptors is capable of imitating complex visual functions including light detection, pattern recognition and information decoding. Notably, the flexibility and biocompatibility endow this artificial photoreceptor with great potential in artificial retinal applications. Blind rats implanted with this artificial photoreceptor are demonstrated to exhibit restored visual responses. This study presents a novel approach to fabricating artificial photoreceptors which are sensitive to weak light and provides new insights for the applications of LCPs in implantable devices.
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