Influence of Lewis basicity on the S2- induced synthesis of 0D Cs4PbBr6 hexagonal nanocrystals and its implications for optoelectronics

被引:3
作者
Liu, Yukun [1 ]
Liu, Yangai [1 ]
Yang, Chenguang [1 ]
Mei, Lefu [1 ]
Ding, Hao [1 ]
Mi, Ruiyu [1 ]
Zhang, Yuanyuan [2 ]
机构
[1] China Univ Geosci, Sch Mat Sci & Technol, Beijing Key Lab Mat Utilizat Nonmet Minerals & Sol, Natl Lab Mineral Mat, Beijing 100083, Peoples R China
[2] Foshan Univ, Sch Phys & Optoelect Engn, Foshan 528000, Peoples R China
基金
中国国家自然科学基金;
关键词
I NANOCRYSTALS; PEROVSKITE; PHOTOLUMINESCENCE; EFFICIENCY; CSPBX3; PHASE; BR; TRANSFORMATION; FILMS; CL;
D O I
10.1039/d4sc06515h
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Perovskite nanocrystals (NCs) with their excellent optical and semiconductor properties have emerged as primary candidates for optoelectronic applications. While extensive research has been conducted on the 3D perovskite phase, the zero-dimensional (0D) form of this promising material in the NC format remains elusive. In this paper, a new synthesis strategy is proposed. According to the Hard-Soft Acid-Base (HSAB) principle, a novel class of hexagonal semiconductor nanocrystals (Cs4PbBr6 HNCs) derived from 0D perovskite Cs4PbBr6 is synthesized by doping an appropriate amount of PbS precursor solution into bromide. These Cs4PbBr6 HNCs are characterized and compared in detail to CsPbBr3 cubic nanocrystals (CsPbBr3 CNCs) as a reference. The Cs4PbBr6 HNCs exhibit significantly enhanced photoluminescence (PL) compared to CsPbBr3 CNCs, with an external quantum efficiency (EQE) reaching 24.19%. Furthermore, they demonstrate superior UV stability compared to CsPbBr3 CNCs. Comparative analysis of their physical properties and morphology, along with detailed investigations into band structures, density of states, and lifetime decay through DFT calculations, is provided. The practical application potential is validated by encapsulating them into backlight LEDs, covering 121.5% and 90.7% of the color gamut of NTSC and Rec. Our research provides comprehensive insights into the photophysical properties of inorganic halide perovskite nanomaterials and explores their potential in the field of optoelectronics.
引用
收藏
页码:2741 / 2750
页数:10
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