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采用胶体PbSe量子点的具有大开路电压的自供电超宽带光电探测器。

Self-powered, ultrabroad band photodetectors with large open circuit voltage using colloidal PbSe QDs.

作者信息

Chen Yuquan, Perumalveeramalai Chandrasekar, Li Chuanbo, Pammi S V N, Bellam Jagadeesh Babu, Zhang Xiaoming, Ma Peipei

机构信息

Optoelectronics Research Centre, School of Science, Minzu University of China Beijing 100081 China

Department of Physics, Madanapalle Institute of Technology & Science Madanapalle Andhra Pradesh 517 325 India.

出版信息

Nanoscale Adv. 2025 May 20;7(13):4067-4076. doi: 10.1039/d5na00073d. eCollection 2025 Jun 24.

Abstract

Broad band photodetectors are found to be the inevitable component both in scientific and industrial fields. Here, PbSe colloidal QDs prepared by a simple, inexpensive hot injection method were used to fabricate ultra-broadband photodetectors with visible to near-infrared sensing capabilities. The as-fabricated photodetector has a wide spectral response and a stable photoelectric response to lasers with wavelengths ranging from 405 nm to 1550 nm. The responsivity of the photovoltaic detector is 1.43 mA W at 405 nm, 4.67 mA W at 980 nm and 0.2 mA W at 1550 nm. The device with the optimized structure provides the maximum of 250 mV under 780 nm light illumination and 100 mV even under 1550 nm illumination. Specifically, the detectivity value reaches up to 4.54 × 10 Jones under 1550 nm laser illumination with an intensity of 0.41 mW cm. As a result, the current study's findings serve as the foundation for the creation of a broad band photodetector that can detect light in the visible to near infrared range.

摘要

宽带光电探测器被发现是科学和工业领域中不可或缺的组件。在此,通过简单、低成本的热注入方法制备的PbSe胶体量子点被用于制造具有可见光到近红外传感能力的超宽带光电探测器。所制备的光电探测器具有宽光谱响应,并且对波长范围从405 nm到1550 nm的激光具有稳定的光电响应。该光伏探测器在405 nm处的响应度为1.43 mA/W,在980 nm处为4.67 mA/W,在1550 nm处为0.2 mA/W。具有优化结构的器件在780 nm光照下提供的最大电压为250 mV,即使在1550 nm光照下也有100 mV。具体而言,在强度为0.41 mW/cm²的1550 nm激光照射下,探测率值高达4.54×10 Jones。因此,当前研究结果为创建一种能够探测可见光到近红外范围内光的宽带光电探测器奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31da/12186651/a077479d6855/d5na00073d-f1.jpg

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