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March 12, 2026Advanced Functional Materials3 citations

Bio‐Inspired Halide Perovskite Photodetectors and Memristors

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PDPei DuXZXingguo ZhongSFShengwei Fang

Key Points

  • The aim is to review progress in bio-inspired halide perovskite photodetectors and memristors for enhanced machine functions.
  • Review of advancements in bio-inspired perovskite-based vision sensors
  • Discussion on curved and color photodetectors
  • Analysis of neuromorphic memristors and their synaptic features
  • Identification of challenges in device integration and innovation
  • Halide perovskites show exceptional photoelectric properties for mimicking human vision.
  • Memristors effectively replicate brain functions, enhancing computational capabilities.
  • Future opportunities include advancements in multifunctional device design.

Abstract

ABSTRACT Photodetectors and memristors that enable machine perception, computation, and decision‐making functions undergo continuous evolution along bio‐inspired pathways for sophisticated structures and functions found in nature. Halide perovskites have facilitated the development of bio‐inspired photodetectors that structurally mimic human eyes, and synapse memristors that functionally mimic the brain, owing to the outstanding photoelectric properties and unique materials features. This review discusses the advances in bio‐inspired perovskite‐based vision sensors, with a focus on curved and color photodetectors. Neuromorphic memristors, the most representative bionic devices, are highlighted in terms of synaptic characteristic regulation and underlying mechanisms. Moreover, we propose future opportunities and challenges in monolithic integration toward further applications, emphasizing coordinated advancements in multifunctional device design and pixelization process innovation.

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Cite This Study

Du et al. (2026) studied this question.

synapsesocial.com/papers/69b25abe96eeacc4fcec8af3https://doi.org/10.1002/adfm.202532096
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