视网膜
人眼
纳米线
仿生学
材料科学
图像分辨率
纳米技术
光学
光电子学
人工智能
计算机科学
物理
作者
Leilei Gu,Swapnadeep Poddar,Yuanjing Lin,Zhenghao Long,Daquan Zhang,Qianpeng Zhang,Lei Shu,Xiao Qiu,Matthew Kam,Ali Javey,Zhiyong Fan
出处
期刊:Nature
[Springer Nature]
日期:2020-05-20
卷期号:581 (7808): 278-282
被引量:425
标识
DOI:10.1038/s41586-020-2285-x
摘要
Human eyes possess exceptional image-sensing characteristics such as an extremely wide field of view, high resolution and sensitivity with low aberration1. Biomimetic eyes with such characteristics are highly desirable, especially in robotics and visual prostheses. However, the spherical shape and the retina of the biological eye pose an enormous fabrication challenge for biomimetic devices2,3. Here we present an electrochemical eye with a hemispherical retina made of a high-density array of nanowires mimicking the photoreceptors on a human retina. The device design has a high degree of structural similarity to a human eye with the potential to achieve high imaging resolution when individual nanowires are electrically addressed. Additionally, we demonstrate the image-sensing function of our biomimetic device by reconstructing the optical patterns projected onto the device. This work may lead to biomimetic photosensing devices that could find use in a wide spectrum of technological applications. A biomimetic electrochemical eye is presented that has a hemispherical retina made from a high-density array of perovskite nanowires that are sensitive to light, mimicking the photoreceptors of a biological retina.
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