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储能系统技术 储能系统 SiC器件 ★ 5.0

通过半导体基质进行载流子管理以实现高效自供电量子点红外探测器

Charge carrier management via semiconducting matrix for efficient self-powered quantum dot infrared photodetectors

作者 Jianfeng DingXinying LiuYueyue GaoChen DongGentian YueFurui Tan
期刊 半导体学报
出版日期 2025年1月
卷/期 第 46 卷 第 3 期
技术分类 储能系统技术
技术标签 储能系统 SiC器件
相关度评分 ★★★★★ 5.0 / 5.0
关键词 Jianfeng Ding Xinying Liu Yueyue Gao Chen Dong Gentian Yue Furui Tan 半导体学报(英文版) Journal of Semiconductors
语言:

中文摘要

基于量子点(QD)的红外光电探测器在红外监测、成像和光通信方面具有广阔前景。然而,自供电QD器件的光电性能受限于其固有的离散载流子传输机制。本文通过在QD薄膜中构建半导体基质,实现高效的载流子转移与提取。选用p型CuSCN作为能级匹配的基质材料,与n型胶体PbS QD形成异质结。该PbS QD/CuSCN基质不仅促进纳米界面处的载流子分离与传输,还提供连续导电通道,显著提升载流子迁移率与收集效率。器件在808 nm下实现4.38×10¹² Jones的高比探测率和782 mA/W的响应度,优于纯PbS QD器件。

English Abstract

Quantum dot(QD)-based infrared photodetector is a promising technology that can implement current monitoring,imaging and optical communication in the infrared region.However,the photodetection performance of self-powered QD devices is still limited by their unfavorable charge carrier dynamics due to their intrinsically discrete charge carrier transport pro-cess.Herein,we strategically constructed semiconducting matrix in QD film to achieve efficient charge transfer and extraction.The p-type semiconducting CuSCN was selected as energy-aligned matrix to match the n-type colloidal PbS QDs that was used as proof-of-concept.Note that the PbS QD/CuSCN matrix not only enables efficient charge carrier separation and transfer at nano-interfaces but also provides continuous charge carrier transport pathways that are different from the hoping process in neat QD film,resulting in improved charge mobility and derived collection efficiency.As a result,the target structure delivers high specific detectivity of 4.38×1012 Jones and responsivity of 782 mA/W at 808 nm,which is superior than that of the PbS QD-only photodetector(4.66×1011 Jones and 338 mA/W).This work provides a new structure candidate for efficient colloidal QD based optoelectronic devices.
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SunView 深度解读

该量子点红外探测技术对阳光电源光伏及储能系统具有重要应用价值。其载流子管理机制可启发SG系列逆变器的MPPT算法优化:通过构建高效载流子传输通道提升光伏组件弱光响应性能,特别是在808nm近红外波段的探测能力可用于组件热斑监测。异质结界面载流子分离机制可借鉴至SiC/GaN功率器件的栅极驱动设计,降低开关损耗。自供电特性与iSolarCloud智能运维平台结合,可开发无源红外传感节点,实现PowerTitan储能系统的温度场实时监测与预测性维护,提升系统安全性。该技术的高比探测率(4.38×10¹²Jones)为开发新一代光伏组件智能诊断传感器提供理论支撑。