光电探测器
材料科学
光电流
光电子学
紫外线
热离子发射
肖特基势垒
光电效应
纳米线
光电导性
肖特基二极管
电子
量子力学
二极管
物理
作者
Zhiming Bai,Xiang Chen,Xiaoqin Yan,Xin Zheng,Zhuo Kang,Yue Zhang
摘要
A self-powered Schottky-type ultraviolet photodetector with Al-Pt interdigitated electrodes has been fabricated based on selectively grown ZnO nanowire arrays. At zero bias, the fabricated photodetector exhibited high sensitivity and excellent selectivity to UV light illumination with a fast response time of 81 ms. By tuning the Schottky barrier height through the thermally induced variation of the interface chemisorbed oxygen, an ultrahigh sensitivity of 3.1 × 10(4) was achieved at 340 K without an external power source, which was 82% higher than that obtained at room temperature. According to the thermionic emission-diffusion theory and the solar cell theory, the changes in the photocurrent of the photodetector at zero bias with various system temperatures were calculated, which agreed well with the experimental data. This work demonstrates a promising approach to modulating the performance of a self-powered photodetector by heating and provides theoretical support for studying the thermal effect on the future photoelectric device.
科研通智能强力驱动
Strongly Powered by AbleSci AI