软件部署
计算机科学
光电探测器
透视图(图形)
可穿戴计算机
电子工程
工程类
可穿戴技术
系统工程
电气工程
生物芯片
CMOS芯片
作者
Yihong Sun,Jiwei Chen,Yueyi Sun,Yingjie Luo,Ran Huo,Mengqi Che,Han Zhang,Ruolan Wen,Wen Lei,Changjian Zhou
标识
DOI:10.1002/lpor.202501848
摘要
ABSTRACT 2D materials (2DMs)‐based self‐powered photodetectors (SPPDs) represent a new paradigm for low‐power optoelectronics, as they achieve battery‐free operation and simplified device architectures. The self‐powered properties of 2DM‐SPPDs are generally induced through two fundamental mechanisms: 1) symmetry‐breaking, which creates asymmetric built‐in electric fields via PN junctions, asymmetric contacts, electrodes, or thickness; 2) multi‐physical coupling, which leverages piezo‐optoelectronic, ferro‐optoelectronic, photo‐thermoelectric, or other effects to provide additional driving forces for carrier separation and functionality. In this review, we present a comprehensive review and performance comparisons of 2DM‐SPPDs arising from these two distinct mechanisms. Typical application scenarios based on 2DM‐SPPDs, including imaging, optical communications, and bionic and wearable optoelectronics are summarized and critically compared with conventional Si‐based photodetectors. Finally, we provide the prospects of 2DM‐SPPDs, highlighting that challenges remain in bandwidth‐responsivity trade‐offs, wafer‐scale growth, packaging and bonding, CMOS compatibility, and testing standardization. We anticipate that this perspective will serve as a valuable reference to guide future research efforts and accelerate the industrial deployment of 2DM‐SPPDs.
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