Scalable nanofocusing heterojunctions for raptor-inspired on-chip vision perception.

Qin, Lanhao; Wang, Jiazheng; Huo, Gaohang; Liu, Shenghong; Deng, Ming; Wang, Jialiang; Ouyang, Decai; He, Wenke et al. · Sci Adv · 2026

basic_science · Level V

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Abstract

Biological visual systems provide a blueprint for intelligent perception in complex dynamic environments. Inspired by the optical role of retinal oil droplets in raptor vision, we report a plasmonic nanofocusing synaptic array (PNSA) for bioinspired visual sensing and motion perception. The pivotal design is a wafer-scale Au@MoS<sub>2</sub> core-shell heterojunction that enhances light concentration like the retinal oil droplets of raptors. Leveraging strong localized surface plasmon resonance in the Au core and efficient hot-carrier generation in the MoS<sub>2</sub> shell, the PNSA exhibits an ultrafast relaxation time of 2.2 ms, corresponding to a theoretical refresh rate of ∼450 Hz. Uniform 2-inch wafer-scale fabrication enables a 32 × 32 optoelectronic synaptic array with 100% yield and only 2.2% device-to-device variation. The array supports 5-bit optical programming and generates temporally encoded motion representations that achieve 98.95% accuracy in motion-direction classification after 10 training epochs. This work establishes a scalable materials platform for bioinspired visual sensing, offering a promising route toward on-chip vision perception.

Medical subject headings