发色团
光致发光
材料科学
发光
卤化物
激子
光电子学
溶剂变色
卤素
吸收(声学)
金属卤化物
金属
光化学
光学
荧光
无机化学
物理
有机化学
化学
复合材料
冶金
烷基
量子力学
作者
Mingze Li,Maxim S. Мolokeev,Jing Zhao,Zhiguo Xia
标识
DOI:10.1002/adom.201902114
摘要
Abstract Zero‐dimensional (0D) organic–inorganic hybrid luminescent metal halides have many promising optoelectronic applications; however, the single building unit in the 0D framework restricts their multimode optical control and photoluminescence tuning. Thus, it remains urgent but challenging to rationally design distinct anionic polyhedral with different optical functions and further expand this family by an equivalent cation substitution and halogen replacement. Herein, (C 9 NH 20 ) 9 [Pb 3 X 11 ](MX 4 ) 2 (X = Br and Cl, M = Mn, Fe, Co, Ni, Cu, and Zn) is successfully synthesized verifying the rationality of the design philosophy, and the optical characterizations demonstrate the effects of X‐position anions and M‐position cations on luminescence process. Intriguingly, both [Pb 3 X 11 ] 5− and [MX 4 ] 2− perform as inorganic building units in this 0D system and optically active centers, in which the former leads to high‐efficiency broad‐band yellow/green emission originating from self‐trapped excitons and the as‐observed multicomponent chromophores are derived from the absorption of the latter in the visible light region. The present work highlights the importance of different optical functional units showing synergistic effects on the physical properties and inspires future studies to explore multifunctional application of 0D luminescent metal halides.
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