Enhancing crystal integrity and structural rigidity of CsPbBr3 nanoplatelets to achieve a narrow color-saturated blue emission

光致发光 材料科学 量子产额 单层 光电效应 晶体结构 纳米技术 化学工程 光电子学 结晶学 化学 光学 荧光 物理 工程类
作者
Qianqian Huang,Wenxu Yin,Bo Gao,Qingsen Zeng,Dong Yao,Hao Zhang,Yinghe Zhao,Weijia Zheng,Jiaqi Zhang,Xuyong Yang,Xiaoyu Zhang,Andrey L. Rogach
出处
期刊:Light-Science & Applications [Springer Nature]
卷期号:13 (1): 111-111 被引量:53
标识
DOI:10.1038/s41377-024-01441-1
摘要

Abstract Quantum-confined CsPbBr 3 perovskites are promising blue emitters for ultra-high-definition displays, but their soft lattice caused by highly ionic nature has a limited stability. Here, we endow CsPbBr 3 nanoplatelets (NPLs) with atomic crystal-like structural rigidity through proper surface engineering, by using strongly bound N-dodecylbenzene sulfonic acid (DBSA). A stable, rigid crystal structure, as well as uniform, orderly-arranged surface of these NPLs is achieved by optimizing intermediate reaction stage, by switching from molecular clusters to mono-octahedra, while interaction with DBSA resulted in formation of a Cs x O monolayer shell capping the NPL surface. As a result, both structural and optical stability of the CsPbBr 3 NPLs is enhanced by strong covalent bonding of DBSA, which inhibits undesired phase transitions and decomposition of the perovskite phase potentially caused by ligand desorption. Moreover, rather small amount of DBSA ligands at the NPL surface results in a short inter-NPL spacing in their closely-packed films, which facilitates efficient charge injection and transport. Blue photoluminescence of the produced CsPbBr 3 NPLs is bright (nearly unity emission quantum yield) and peaks at 457 nm with an extremely narrow bandwidth of 3.7 nm at 80 K, while the bandwidth of the electroluminescence (peaked at 460 nm) also reaches a record-narrow value of 15 nm at room temperature. This value corresponds to the CIE coordinates of (0.141, 0.062), which meets Rec. 2020 standards for ultra-high-definition displays.
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