Institute of Applied Physics and Materials Engineering, University of Macau, Macao SAR, 999078, P. R. China.
The Key Laboratory of Weak Light Nonlinear Photonics, Ministry of Education, School of Physics and Teda Applied Physics Institute, Nankai University, Tianjin, 300071, P. R. China.
Adv Mater. 2023 May;35(21):e2300632. doi: 10.1002/adma.202300632. Epub 2023 Mar 28.
Stacked 2D perovskites provide more possibilities for next generation photodetector with more new features. Compared with its excellent optoelectronic properties, the good dielectric performance of metal halide perovskite rarely comes into notice. Here, a bifunctional perovskite based photovoltaic detector capable of two wavelength demultiplexing is demonstrated. In the Black Phosphorus/Perovskite/MoS structured photodetector, the comprehensive utilization of the photosensitive and dielectric properties of 2D perovskite allows the device to work in different modes. The device shows normal continuous photoresponse under 405 nm, while it shows a transient spike response to visible light with longer wavelengths. The linear dynamic range, rise/decay time, and self-powered responsivity under 405 nm can reach 100, 38 µs/50 µs, and 17.7 mA W , respectively. It is demonstrated that the transient spike photocurrent with long wavelength exposure is related to the illumination intensity and can coexist with normal photoresponse. Two waveband-dependent signals can be identified and used to reflect more information simultaneously. This work provides a new strategy for multispectral detection and demultiplexing, which can be used to improve data transfer rates and encrypted communications. This work mode can inspire more multispectral photodetectors with different stacked 2D materials, especially to the optoelectronic application of the wide bandgap, high dielectric photosensitive materials.
二维层状钙钛矿为下一代具有更多新特性的光电探测器提供了更多的可能性。与优异的光电性能相比,卤化物钙钛矿的良好介电性能很少受到关注。在此,展示了一种基于双功能钙钛矿的光伏探测器,该探测器能够实现双波长分复用。在黑磷/钙钛矿/ MoS 结构光探测器中,二维钙钛矿的光响应和介电性能的综合利用使器件能够在不同模式下工作。该器件在 405nm 下表现出正常的连续光响应,而在较长波长的可见光下表现出瞬态尖峰响应。在 405nm 下,线性动态范围、上升/下降时间和自供电响应度分别可达 100、38µs/50µs 和 17.7mA W。证明了长波长曝光下的瞬态尖峰光电流与光照强度有关,并且可以与正常光响应共存。可以识别两个依赖于波长的信号,并同时用于反映更多信息。这项工作为多光谱检测和分复用提供了一种新策略,可用于提高数据传输速率和加密通信。这种工作模式可以激发具有不同堆叠二维材料的更多多光谱光电探测器,特别是对宽带隙、高介电光敏材料的光电应用。