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Constraint Mechanism of Power Device Design Based on Perovskite Quantum Dots Pumped by an Electron Beam

Authors :
Yining Mu
Yanzheng Li
Peng Du
Hang Ren
Idelfonso Tafur Monroy
Makram Ibrahim
Guanyu Wen
Dong Liang
Jianshang Feng
Jiayu Ao
Xiangyue Xie
Yumeng Li
Terahertz Systems
School of Med. Physics and Eng. Eindhoven
Terahertz Photonic Systems
Center for Quantum Materials and Technology Eindhoven
Center for Terahertz Science and Technology Eindhoven
Source :
Sensors, 22(10):3721. Multidisciplinary Digital Publishing Institute (MDPI)
Publication Year :
2022
Publisher :
Multidisciplinary Digital Publishing Institute (MDPI), 2022.

Abstract

This paper studied the constraint mechanism for power device design based on perovskite quantum dots pumped by an electron beam. Combined with device designing, an experimental system of self-saturation luminescence and aging failure was designed for CsPbBr3 films. On this basis, we further completed the self-saturation luminescence and aging failure experiment and constructed a model of self-saturation luminescence and aging failure for CsPbBr3 device designing. Three constraints were proposed after analyzing and discussing the experimental data. Firstly, too high of a pumping current density makes it difficult to effectively promote the enhancement of luminescence efficiency. Secondly, radiation decomposition and aging failure of CsPbBr3 films are mainly related to the polarized degree of CsPbBr3 nanocrystals. Thirdly, by increasing the pumping electric field, the pumping energy can be effectively and widely delivered to the three-dimensional quantum dots film layer space, and there is a nonlinear relationship between the attenuation of the pumping energy density and the increment of the pumping electric field, which will effectively avoid the local high-energy density of instantaneous optical pumping.

Details

Language :
English
ISSN :
14248220
Volume :
22
Issue :
10
Database :
OpenAIRE
Journal :
Sensors
Accession number :
edsair.doi.dedup.....be40c1648450ebb32bd878fb57c07ee8