Pan Xiyan, Zhang Jianqiang, Zhou Hai, Liu Ronghuan, Wu Dingjun, Wang Rui, Shen Liangping, Tao Li, Zhang Jun, Wang Hao
Hubei Key Laboratory of Ferro and Piezoelectric Materials and Devices, School of Microelectronics and Faculty of Physics and Electronic Science, Hubei University, Wuhan, 430062, People's Republic of China.
Nanomicro Lett. 2021 Feb 12;13(1):70. doi: 10.1007/s40820-021-00596-5.
The carrier transport layer with reflection reduction morphology has attracted extensive attention for improving the utilization of light. Herein, we introduced single-layer hollow ZnO hemisphere arrays (ZHAs) behaving light trapping effect as the electron transport layer in perovskite photodetectors (PDs). The single-layer hollow ZHAs can not only reduce the reflection, but also widen the angle of the effective incident light and especially transfer the distribution of the optical field from the ZnO/FTO interface to the perovskite active layer confirmed by the 3D finite-difference time-domain simulation. These merits benefit for the generation, transport and separation of carriers, improving the light utilization efficiency. Finally, our optimized FTO/ZHA/CsPbBr/carbon structure PDs showed high self-powered performance with a linear dynamic range of 120.3 dB, a detectivity of 4.2 × 10 Jones, rise/fall time of 13/28 µs and the f of up to 28 kHz. Benefiting from the high device performance, the PD was demonstrated to the application in the directional transmission of encrypted files as the signal receiving port with super high accuracy. This work uniquely utilizes the features of high-performance self-powered perovskite PDs in optical communication, paving the path to wide applications of all-inorganic perovskite PDs.
具有减反射形貌的载流子传输层因能提高光利用率而备受关注。在此,我们引入了具有光捕获效应的单层空心ZnO半球阵列(ZHAs)作为钙钛矿光电探测器(PDs)中的电子传输层。单层空心ZHAs不仅能减少反射,还能拓宽有效入射光的角度,特别是通过三维时域有限差分模拟证实,能将光场分布从ZnO/FTO界面转移到钙钛矿活性层。这些优点有利于载流子的产生、传输和分离,提高光利用效率。最后,我们优化的FTO/ZHA/CsPbBr/碳结构的PDs表现出高自供电性能,线性动态范围为120.3 dB,探测率为4.2×10琼斯,上升/下降时间为13/28 μs,截止频率高达28 kHz。受益于高器件性能,该PD被证明可作为超高精度的信号接收端口应用于加密文件的定向传输。这项工作独特地利用了高性能自供电钙钛矿PDs在光通信中的特性,为全无机钙钛矿PDs的广泛应用铺平了道路。