化学
原位
异质结
钙钛矿(结构)
白光
纳米技术
光电子学
结晶学
有机化学
物理
材料科学
作者
Mengyu Guan,Jun Liu,Linpeng Xie,Dan Liu,Zongyuan Xie,Lei Qiu,Yiwen Wu,Peipei Dang,Yunlong Xie,Wenxin Mao,Zhigao Dai,Guogang Li
标识
DOI:10.1021/acs.inorgchem.4c01208
摘要
Mixed-dimensional perovskite (MDP) heterostructures are promising optoelectronic semiconductors. Yet, the current preparation methods involve complex experimental procedures and material compatibility constraints, limiting their widespread applications. Here, we present a one-step room temperature solution-based approach to synthesize a range of 1D C4N2H14PbBr4 and 3D APbBr3 (A = Cs+, MA+, FA+) self-assembled MDP heterostructures exhibiting high-efficiency white light-emitting properties. The ultra-broadband emission results from the synergy between the self-captured blue broadband emission from 1D perovskites and the green emission of 3D perovskites, covering the entire visible-light spectrum with a full width at half-maximum exceeding 170 nm and a remarkable photoluminescence quantum yield of 26%. This work establishes a novel prototype for the preparation of highly luminescent MDP heterostructures, offering insights for future research and industrialization in the realm of white light LEDs.
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