荧光粉
拉曼光谱
材料科学
发射光谱
分析化学(期刊)
兴奋剂
激发态
灵敏度(控制系统)
发光
谱线
热稳定性
光致发光
衍射
半最大全宽
光电子学
化学
光学
带隙
发射强度
热的
理论(学习稳定性)
红外线的
光谱学
光谱灵敏度
受激发射
作者
Peng Du,Xuanyu Ge,Przemysław Woźny,Shuailing Ma,Laihui Luo,Tian Cui,Marcin Runowski
标识
DOI:10.1002/lpor.202502134
摘要
ABSTRACT Mn 2+ ‐doped ZnAl 2 O 4 phosphors with exceptional pressure sensing capacities are designed to address the limitations of existing luminescent manometers. Excited at 427 nm, the synthesized phosphors exhibit bright green emission from Mn 2+ with optimal doping content of 2 mol%. The temperature‐dependent emission spectra clarify the good thermal stability of the developed phosphors. Moreover, the pressure‐dependent Raman spectra and X‐ray diffraction results manifest that the studied samples possess great structural stability over the applied pressure range. Furthermore, evident spectral red‐shift and broadened emission band are observed in the synthesized phosphors at high‐pressure, leading to pressure‐induced polychromatic luminescence. Specifically, as pressure arises ( i.e ., 0–30.70 GPa), the emission band centroid shows red‐shift, contributing to a high absolute sensitivity of d λ /d p = 2.12 nm GPa −1 , whereas the full width at half maximum (FWHM) of the emission band is increased, resulting in the absolute sensitivity of d FWHM /d p = 0.71 nm GPa −1 . Additionally, through analyzing the responses of the color coordinates to pressure, the manometric properties of the designed phosphors are also investigated, yielding a maximum relative sensitivity of 18.34% GPa −1 . These findings demonstrate that the designed phosphors are promising candidates for high‐sensitivity, broad‐range, and multi‐parameter optical manometers.
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