Li Yuanzhe, He Xie, Chen Shih-Chi, Zhao Ni
Department of Electronic Engineering, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong SAR 999077, China.
Department of Mechanical and Automation Engineering, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong SAR 999077, China.
Chem Rev. 2025 Aug 13;125(15):6977-7022. doi: 10.1021/acs.chemrev.4c00763. Epub 2025 Jul 21.
Photodetectors have become essential in modern technologies, yet traditional designs face challenges in many emerging applications owing to their fixed response characteristics, such as fixed responsivity, bandwidth, dynamic range, and spectral response. This limitation reduces their effectiveness when the target signal or ambient light varies in intensity, frequency, and wavelength, etc. Intelligent photodetectors, featuring postmanufacturing tunability, have emerged as a promising solution by allowing for real-time adaptability. These dynamic devices can adjust key performance metrics during operation, enhancing their versatility and applicability. Beyond basic photodetection, this adaptability lays fundamentals for various new functions, for instance, in-sensor computing and computational spectrum reconstruction. Some devices also offer switchable operation modes and integrated multisensory perception, minimizing the need for auxiliary components and simplifying the system architecture. This review aims to provide a comprehensive and holistic view of the diverse advances in intelligent photodetectors under the concept of tunable mechanisms. Beginning with foundational principles, we explore how postmanufacturing tunability enhances basic photodetection performance and enables advanced functions through tunable temporal response dynamics, spectral response, and multiple operational modes. We conclude with challenges and future opportunities, aiming to inspire continued innovation by bridging diverse fields of photodetection through the lens of postmanufacturing tunability.
光电探测器在现代技术中已变得至关重要,然而传统设计由于其固定的响应特性,如固定的响应度、带宽、动态范围和光谱响应,在许多新兴应用中面临挑战。当目标信号或环境光在强度、频率和波长等方面发生变化时,这种限制会降低它们的有效性。具有制造后可调节性的智能光电探测器已成为一种有前途的解决方案,它能够实现实时适应性。这些动态器件可以在运行过程中调整关键性能指标,增强其通用性和适用性。除了基本的光电探测功能外,这种适应性为各种新功能奠定了基础,例如传感器内计算和计算光谱重建。一些器件还提供可切换的操作模式和集成的多感官感知功能,最大限度地减少了对辅助组件的需求并简化了系统架构。本综述旨在从可调谐机制的概念出发,全面、整体地介绍智能光电探测器的各种进展。从基本原理开始,我们探讨制造后可调节性如何通过可调谐的时间响应动态、光谱响应和多种操作模式来提高基本光电探测性能并实现高级功能。我们以挑战和未来机遇作为总结,旨在通过制造后可调节性这一视角,连接光电探测的不同领域,激发持续创新。