卤化物
发光
分子
溶剂
化学
金属
金属卤化物
无机化学
光化学
材料科学
有机化学
光电子学
作者
Qichuan Hu,Jing Liu,Hailong Yu,Hanqi Xu,Jinyang Yu,Shuang Zhao,Wenzhi Wu
标识
DOI:10.1016/j.jcis.2024.01.215
摘要
The luminescent properties of metal halides are usually considered to be determined by the inorganic framework. In this work, we propose that the luminescent properties of metal halides are determined by both the inorganic framework and the solvent [Denoted as (inorganic framework + n·solvent molecules), n = 0, 1, 2…] through the abundant solvatochromic or thermochromic effect of tetrabutylammonium lead bromides [TPB, T = TBA (tetrabutylammonium), P = Pb (lead), B = Br (bromide)] containing water (H2O) and ethanol (EtOH). One-dimensional (1D) TPB can form ligands of [[Pb5Br18]8− + 2H2O(H)], [[Pb5Br18]8− + 2H2O(H) + 2H2O] and [[Pb5Br18]8− + 2EtOH] by solvent or heat treatment has completely different luminescent properties resulting from different solvents. They exhibit broad spectral emission due to strong electron-phonon coupling, as do other 1D metal halides. However, the 1D TPB containing only [[Pb5Br18]8− achieves extremely rare narrow-band green emission, with full width at half maximum (FWHM) of 21 nm at room temperature and 8 nm at low temperature, color gamut covers 95 % of the International Telecommunication Union recommendation 2020 standard. This work provides new guidance for the modulation of photophysical properties of metal halides, as well as new materials for the display and smart materials fields.
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