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A HgTe/ZnO quantum dots vertically stacked heterojunction low dark current photodetector
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作者 HUANG Xin-Ning JIANG Teng-Teng +15 位作者 DI Yun-Xiang XIE Mao-Bin GUO Tian-Le LIU Jing-Jing WU Bin-Min SHI Jing-Mei QIN Qiang DENG Gong-Rong CHEN Yan LIN Tie shenhong MENG Xiang-Jian WANG Xu-Dong CHU Jun-Hao GE Jun WANG Jian-Lu 《红外与毫米波学报》 北大核心 2025年第1期33-39,共7页
Colloidal quantum dots(CQDs)are affected by the quantum confinement effect,which makes their bandgap tunable.This characteristic allows these materials to cover a broader infrared spectrum,providing a costeffective al... Colloidal quantum dots(CQDs)are affected by the quantum confinement effect,which makes their bandgap tunable.This characteristic allows these materials to cover a broader infrared spectrum,providing a costeffective alternative to traditional infrared detector technology.Recently,thanks to the solution processing properties of quantum dots and their ability to integrate with silicon-based readout circuits on a single chip,infrared detectors based on HgTe CQDs have shown great application prospects.However,facing the challenges of vertically stacked photovoltaic devices,such as barrier layer matching and film non-uniformity,most devices integrated with readout circuits still use a planar structure,which limits the efficiency of light absorption and the effective separation and collection of photo-generated carriers.Here,by synthesizing high-quality HgTe CQDs and precisely controlling the interface quality,we have successfully fabricated a photovoltaic detector based on HgTe and ZnO QDs.At a working temperature of 80 K,this detector achieved a low dark current of 5.23×10^(-9)A cm^(-2),a high rectification ratio,and satisfactory detection sensitivity.This work paves a new way for the vertical integration of HgTe CQDs on silicon-based readout circuits,demonstrating their great potential in the field of high-performance infrared detection. 展开更多
关键词 colloidal quantum dots PHOTODETECTOR barrier layer HETEROJUNCTION
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