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- W3048496821 abstract "Abstract The fluorescence intensity ratio (FIR) temperature sensing of rare earth ion doped materials has been extensively discussed, but still many questions are worthy of attention. In this paper, we studied the effects of Er3+ radiation transition rate and energy level splitting on temperature sensing properties of LnOCl phosphors. LnOCl (Ln = Y, La): 5 mol% Er3+ samples were prepared by single displacement reaction with high temperature solid state method. The theoretical value of the radiative transition rate ratio of the 4S3/2 and 2H11/2 levels for Er3+ (AH/AS) was calculated by Judd-Ofelt theory, and the experimental value of AH/AS was obtained by temperature sensing. The error between experimental and theoretical values of AH/AS for LnOCl (Ln = Y, La): Er3+ phosphors was compared. It was found that the error of YOCl is small and the error of LaOCl is large. Furthermore, a theoretical explanation was given and the temperature sensing of LaOCl : Er3+ was fitted with sub-levels of 4S3/2 and 2H11/2 levels." @default.
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- W3048496821 date "2020-12-01" @default.
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- W3048496821 title "Effects of radiation transition rate and energy level splitting on temperature sensing properties of 4S3/2 and 2H11/2 energy levels for Er3+" @default.
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- W3048496821 doi "https://doi.org/10.1016/j.ijleo.2020.165401" @default.
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