突破室温制备的高性能短波红外光电子用硫化铅胶体量子点的尺寸限制

IF 6.7 1区 物理与天体物理 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Yin-Fen Ma, Jian Xu, Kelei Zu, You-Mei Wang, Juntao Hu, Nan Chen, Dong-Ming Zhang, Ao Li, Dengke Wang, Huaiyi Ding, Mei Leng*, Yong-Biao Zhao* and Zheng-Hong Lu, 
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引用次数: 0

摘要

硫化铅(PbS)胶体量子点(CQDs)由于其在整个SWIR光谱中的可调谐带隙而成为短波红外(SWIR)光电器件的重要研究对象。在室温下直接合成PbS CQD油墨,并准备好制造各种SWIR器件。目前还没有吸收超过1200nm的PbS CQDs的RT合成方案。在这里,我们报道了首次在RT下合成吸收超过1800 nm的PbS CQDs。反应介质中铅硫(Pb/S)前体比调节着新种子的成核与现有圆点的生长之间存在着微妙的平衡,维持在1.1 ~ 2的适当Pb/S比,以保持新种子的持续生长。制备了具有1550 nm激子吸收的基于PbS CQDs的光电二极管,以证明其在器件应用中的适用性。器件的光响应率为0.635 a /W,比探测率为1.01 × 1011 Jones,响应速度快,上升和下降时间分别为1.08和1.10 μs。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Breaking the Size Limit of Room-Temperature Prepared Lead Sulfide Colloidal Quantum Dots for High-Performance Short-Wave Infrared Optoelectronics

Breaking the Size Limit of Room-Temperature Prepared Lead Sulfide Colloidal Quantum Dots for High-Performance Short-Wave Infrared Optoelectronics

Lead sulfide (PbS) colloidal quantum dots (CQDs) are of great interest for short-wave infrared (SWIR) optoelectronic devices due to their tunable bandgaps across the whole SWIR spectra. PbS CQD inks synthesized directly at room temperature (RT) and ready for the fabrication of various SWIR devices are highly demanded. There are currently no available protocols for RT synthesis of PbS CQDs with absorption beyond 1200 nm. Here, we report on the first synthesis of PbS CQDs at RT with an absorption beyond 1800 nm. There is a delicate balance between nucleation of new seeds and growth of existing dots regulated by the lead-to-sulfur (Pb/S) precursor ratio in the reaction medium, and a proper Pb/S ratio ranging from 1.1 to 2 should be maintained to keep the continuous growth. Photodiodes based on PbS CQDs with a 1550 nm excitonic absorption are fabricated to demonstrate their suitability for device applications. The resulting devices achieve a high photo responsivity of 0.635 A/W, a specific detectivity of 1.01 × 1011 Jones, and a fast response with rise and fall times of 1.08 and 1.10 μs, respectively.

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来源期刊
ACS Photonics
ACS Photonics NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
11.90
自引率
5.70%
发文量
438
审稿时长
2.3 months
期刊介绍: Published as soon as accepted and summarized in monthly issues, ACS Photonics will publish Research Articles, Letters, Perspectives, and Reviews, to encompass the full scope of published research in this field.
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