光电探测器
材料科学
光电子学
光伏
紫外线
钙钛矿(结构)
带隙
量子点
可见光谱
红外线的
量子效率
卤化物
光学
光伏系统
化学
物理
无机化学
生态学
生物
结晶学
作者
Chang Liu,Kai Wang,Pengcheng Du,Enmin Wang,Xiong Gong,Alan J. Heeger
出处
期刊:Nanoscale
[The Royal Society of Chemistry]
日期:2015-01-01
卷期号:7 (39): 16460-16469
被引量:110
摘要
Sensing from ultraviolet-visible to infrared is critical for both scientific and industrial applications. In this work, we demonstrate solution-processed ultrasensitive broad-band photodetectors (PDs) utilizing organolead halide perovskite materials (CH3NH3PbI3) and PbS quantum dots (QDs) as light harvesters. Through passivating the structural defects on the surface of PbS QDs with diminutive molecular-scaled CH3NH3PbI3, both trap states in the bandgap of PbS QDs for charge carrier recombination and the leakage currents occurring at the defect sites are significantly reduced. In addition, CH3NH3PbI3 itself is an excellent light harvester in photovoltaics, which contributes a great photoresponse in the ultraviolet-visible region. Consequently, operated at room temperature, the resultant PDs show a spectral response from 375 nm to 1100 nm, with high responsivities over 300 mA W−1 and 130 mA W−1, high detectivities exceeding 1013 Jones (1 Jones = 1 cm Hz1/2 W−1) and 5 × 1012 Jones in the visible and near infrared regions, respectively. These device performance parameters are comparable to those from pristine inorganic counterparts. Thus, our results offer a facile and promising route for advancing the performance of broad-band PDs.
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