Artificial ionic nanochannels with light perception capabilities hold promise for creating ionic devices. Nevertheless, most research primarily focuses on regulating single nanochannels, leaving the cumulative effect of numerous nanochannels and their integration underexplored. We herein develop a biomimetic photoreceptor based on photoresponsive highly aligned nanochannels (pHANCs), which exhibit uniform channel heights, phototunable surface properties, and excellent compatibility with microfabrication techniques, enabling the scalable fabrication and integration into functional ionic devices. These pHANCs demonstrate exceptional ion selectivity and permeability due to the high surface charges and well-ordered conduits, resulting in outstanding energy harvesting from concentration gradients. Large-scale fabrication of pHANCs has been successfully realized, wherein hundreds of biomimetic photoreceptors produce an ultrahigh voltage over 76 volts, which has not been achieved previously. In addition, we demonstrate that the biomimetic photoreceptor can be further upscaled to be a self-powered ionic image sensor, capable of sensing and decoding incident light information.
Scalable integration of photoresponsive highly aligned nanochannels for self-powered ionic devices.
可扩展集成光响应高度取向纳米通道,用于自供电离子器件
阅读:12
作者:Huang Yaxin, Wu Changjin, Cao Yingnan, Zheng Jing, Zeng Binglin, Li Xiaofeng, Li Mingliang, Tang Jinyao
| 期刊: | Science Advances | 影响因子: | 12.500 |
| 时间: | 2024 | 起止号: | 2024 Dec 20; 10(51):eads5591 |
| doi: | 10.1126/sciadv.ads5591 | ||
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