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Band Tunable Microcavity Perovskite Artificial Human Photoreceptors
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Band Tunable Microcavity Perovskite Artificial Human Photoreceptors

Wei-Lun Tsai, Chien-Yu Chen, Yu-Ting Wen, Lin Yang, Yu-Lun ChengHao-Wu Lin
Advanced Materials, 卷.31(24), 1900231
06/2019
PMID: 31020730

摘要

artificial human photoreceptors halide perovskites optical microcavities spectral response Materials Science (all) Mechanics of Materials Mechanical Engineering
Electronic device versions of the neural functions of the human retina have high potential for use in artificial vision. This study demonstrates halide perovskite artificial human photoreceptors with specific photoresponses to red, green, and blue colors, which are consistent with human retinal photoreceiving cones and rods. In contrast to the current programmable spectral-response technologies, a novel microcavity structure is combined in this study with a perovskite absorber to achieve a targeted spectrum without using external optical filters. The fabricated artificial photoreceptors exhibit excellent performance including a high detectivity of more than 10 Jones, a large linear dynamic range of 154 dB, and a short response time of 580 ns. These values are equal to or better than those of the natural human retina. These devices can easily be monolithically integrated on a single flexible substrate by using vacuum deposition, and a true proof-of-concept full-color image reconstruction is demonstrated.

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