Fang Yuanyuan, Wang Jingtian, Zhang Long, Niu Guangming, Sui Laizhi, Wu Guorong, Yuan Kaijun, Wang Kai, Zou Bo
State Key Laboratory of Superhard Materials, College of Physics, Jilin University Changchun 130012 China
State Key Laboratory of Molecular Reaction Dynamics, Dalian Institute of Chemical Physics, Chinese Academy of Sciences 457 Zhongshan Road Dalian 116023 China
Chem Sci. 2023 Feb 7;14(10):2652-2658. doi: 10.1039/d2sc06982b. eCollection 2023 Mar 8.
Efficient warm white light emission is an ideal characteristic of single-component materials for light-emitting applications. Although two-dimensional hybrid perovskites are promising candidates for light-emitting diodes, as they possess broadband self-trapped emission and outstanding stability, they rarely achieve a high photoluminescence quantum yield of warm white light emissions. Here, an unusual pressure-induced warm white emission enhancement phenomenon from 2.1 GPa to 9.9 GPa was observed in two-dimensional perovskite (2meptH)PbCl, accompanied by a large increase in the relative quantum yield of photoluminescence. The octahedral distortions, accompanied with the evolution of organic cations, triggered the structural collapse, which caused the sudden emission enhancement at 2.1 GPa. Afterwards, the further intra-octahedral collapse promotes the formation of self-trapped excitons and the substantial suppression of nonradiative transitions are responsible for the continuous pressure-induced photoluminescence enhancement. This study not only clearly illustrates the relationship between crystal structure and photoluminescence, but also provides an experimental basis for the synthesis of high-quality warm white light-emitting 2D metal halide perovskite materials.
高效的暖白色发光是发光应用中单组分材料的理想特性。尽管二维杂化钙钛矿因其具有宽带自陷发光和出色的稳定性而有望成为发光二极管的候选材料,但它们很少能实现高的暖白色发光光致发光量子产率。在此,在二维钙钛矿(2meptH)PbCl中观察到一种不寻常的压力诱导的暖白色发光增强现象,压力范围从2.1 GPa到9.9 GPa,同时光致发光的相对量子产率大幅增加。八面体畸变伴随着有机阳离子的演化,引发了结构坍塌,导致在2.1 GPa时发光突然增强。之后,进一步的八面体内坍塌促进了自陷激子的形成,而非辐射跃迁的大幅抑制则是压力诱导光致发光持续增强的原因。这项研究不仅清楚地阐明了晶体结构与光致发光之间的关系,还为高质量暖白色发光二维金属卤化物钙钛矿材料的合成提供了实验依据。