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A Photoelectrochemical Retinomorphic Synapse

ADVANCED MATERIALS [2024]
Jin Hu, Ming-Jian Jing, Yu-Ting Huang, Bo-Han Kou, Zheng Li, Yi-Tong Xu, Si-Yuan Yu, Xierong Zeng, Jie Jiang, Peng Lin, Wei-Wei Zhao
ABSTRACT

Reproducing human visual functions with artificial devices is a long-standing goal of the neuromorphic domain. However, emulating the chemical language communication of the visual system in fluids remains a grand challenge. Here, a “multi-color” hydrogel-based photoelectrochemical retinomorphic synapse is reported with unique chemical-ionic-electrical signaling in an aqueous electrolyte that enables, e.g., color perception and biomolecule-mediated synaptic plasticity. Based on the specific enzyme-catalyzed chromogenic reactions, three multifunctional colored hydrogels are developed, which can not only synergize with the Bi 2 S 3 photogate to recognize the primary colors but also synergize with a given polymeric channel to promote the long-term memory of the system. A synaptic array is further constructed for sensing color images and biomolecule-coded information communication. Taking advantage of the versatile biochemistry, the biochemical-driven reversible photoelectric response of the cone cell is further mimicked. This work introduces rich chemical designs into retinomorphic devices, providing a perspective for replicating the human visual system in fluids.

MATERIALS

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