材料科学
荧光粉
发光
兴奋剂
掺杂剂
机械容积
利加
持续发光
荧光
分析化学(期刊)
纳米技术
光电子学
化学
光学
热释光
制作
病理
物理
医学
色谱法
替代医学
作者
Puxian Xiong,Bolong Huang,Dengfeng Peng,Bruno Viana,Mingying Peng,Zhijun Ma
标识
DOI:10.1002/adfm.202010685
摘要
Abstract Currently, most of the mechanoluminescence (ML) phosphors strongly depend on postirradiation stimulation using ultraviolet light (denoted as “UV exposure” from hereon) to show the ML. However, only a few transition metal cations are proven to be effective luminescence centers, which hinder the development of more ML phosphors. This study reports a self‐recoverable deep‐red‐to‐near‐infrared ML using Cr 3+ ‐doped LiGa 5 O 8 phosphor with fully recoverable ML performance. The ML performance can be further optimized by tuning the trap redistributions by codoping the phosphor with Al 3+ and Cr 3+ cations. Theoretical calculations reveal the important role of Cr dopants in the modulation of local electronic environments for achieving the ML. Owing to the induced interelectronic levels and shallow electron trap distributions, the electron recombination efficiency is enhanced both through direct tunneling and energy transfer toward the dopant levels. Moreover, the ML of Cr 3+ ‐doped LiGa 5 O 8 can penetrate a 2‐mm‐thick pork slice, showing that it can have wide‐ranging in vivo applications, including the optical imaging of intracorporal stress/strain distribution and dynamics. Therefore, this work fabricates a novel ML material with self‐recoverable luminescence in an extended wavelength range, increasing the number of potential ML candidates and promoting the fundamental understanding and practical applications of ML materials.
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