Interface passivated quasi-2D perovskite-based highly stable photodetectors for weak-light detection
Abstract
Weak-light detectors exhibiting long-term stability are of significant importance for both national defense and civilian applications. To address this, we fabricated a lateral high-performance photodetector (PD) based on a poly(N-vinylcarbazole) (PVK)-passivated 2D (PMA)2MAPb2I7 perovskite. The PVK passivation significantly improved both device performance and stability by suppressing vacancy formation and restricting grain boundary migration. The passivated PD achieved a nearly eightfold improvement in self-powered responsivity (R = 0.25 A·W−1, D* = 2.5 × 1011 Jones) and a sixfold enhancement under 5.0 V bias (R = 10.28 A·W−1, D* = 2.6 × 1012 Jones) in comparison with those of the pristine counterpart, showing a high performance compared to the other PDs based on perovskite materials. The passivated PD in self-powered mode demonstrated exceptional operational stability by maintaining 80.7% of its initial photocurrent over 1000 h in ambient air. Integrated into a custom optical communication system, this PD enabled reliable data transmission, while also delivering high-quality imaging under weak illumination (0.1 μW cm−2). This work provided a valuable design strategy for high-performance PDs, translating device innovations into practical solutions for self-powered, weak-light applications critical to emergency scenarios.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (11)
Xiaoting Wang
Long Yuan
Department of Chemical Physics
Ning Sui
Ling Zuo
Xiujun Gao
Zhejiang Lab, Research Center for Computing Sensing 4 , Hangzhou 311121,
Jiajia Ning
Fangfei Li
Qiang Zhou
Xiaochun Chi
Key Lab of Physics and Technology for Advanced Batteries (Ministry of Education), College of Physics, Jilin University 1 , Changchun 130012,
Hanzhuang Zhang
Yinghui Wang