Guangzhou Key Laboratory of Vacuum Coating Technologies and New Energy Materials, Department of Physics, Jinan University , Guangzhou 510632, People's Republic of China.
ACS Appl Mater Interfaces. 2015 Nov 25;7(46):25981-90. doi: 10.1021/acsami.5b09492. Epub 2015 Nov 16.
Photodetectors with a wide spectrum response are important components for sensing, imaging, and other optoelectronic applications. A molybdenum oxide (MoO(3-x))/Si heterojunction has been applied as solar cells with great success, but its potential in photodetectors has not been explored yet. Herein, a self-powered, high-speed heterojunction photodetector fabricated by coating an n-type Si hierarchical structure with an ultrathin hole-selective layer of molybdenum oxide (MoO(3-x)) is first investigated. Excellent and stable photoresponse performance is obtained by using a methyl group passivated interface. The heterojunction photodetector demonstrated high sensitivity to a wide spectrum from 300 to 1100 nm. The self-powered photodetector shows a high detectivity of (∼6.29 × 10(12) cmHz(1/2) W(-1)) and fast response time (1.0 μs). The excellent photodetecting performance is attributed to the enhanced interfacial barrier height and three-dimensional geometry of Si nanostructures, which is beneficial for efficient photocarrier collection and transportation. Finally, our devices show excellent long-term stability in air for 6 months with negligible performance degradation. The thermal evaporation method for large-scale fabrication of MoO(3-x)/n-Si photodetectors makes it suitable for self-powered, multispectral, and high-speed response photodetecting applications.
具有宽光谱响应的光电探测器是传感、成像和其他光电应用的重要组成部分。氧化钼 (MoO(3-x))/Si 异质结已成功应用于太阳能电池,但它在光电探测器中的潜力尚未得到探索。本文首次研究了通过在 n 型 Si 分级结构上涂覆超薄的钼氧化物(MoO(3-x)) 空穴选择层来制备自供电、高速异质结光电探测器。通过使用甲基钝化界面获得了优异且稳定的光电响应性能。该异质结光电探测器对 300nm 至 1100nm 的宽光谱具有高灵敏度。自供电光电探测器表现出高的探测率(约为 6.29×10(12)cmHz(1/2)W(-1))和快速响应时间(1.0μs)。优异的光电探测性能归因于 Si 纳米结构的增强界面势垒高度和三维几何形状,有利于高效的光生载流子收集和输运。最后,我们的器件在空气中具有 6 个月的优异长期稳定性,性能几乎没有下降。MoO(3-x)/n-Si 光电探测器的热蒸发法可用于大规模制备,适合自供电、多光谱和高速响应的光电探测应用。