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March 3, 2026Optics Letters3 citations

Dual-excited anti-thermal quenching in SrGa 12 O 19 : Er 3+ , Yb 3+ , Cr 3+ phosphors: from thermochromism to NIR luminescence

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DLDexin LiuYJYaogeng JiangBLBenchun Li

Key Points

  • Enhanced Cr3+ luminescence intensity is observed with a 2.7-fold increase at 480 K under 980 nm excitation and Yb/Er energy transfer.
  • The phosphors exhibit color changes from green to orange-red with varying excitation wavelengths, useful for anti-counterfeiting features.
  • This observational analysis explores dual-excited anti-thermal quenching properties of phosphors, focusing on energy transfer dynamics and luminescence efficiency.
  • The findings highlight the significant potential for applications in solar cells and LED devices, addressing common thermal quenching issues.

Abstract

Conventional phosphors suffer from thermal quenching, i.e., the loss of emission intensity with rising temperature. A promising, yet emerging solution is a new class of materials called anti-thermal quenching (ATQ) phosphors, capable of avoiding this issue and thus succeeding in applications where higher temperatures are expected. In this study, SrGa12O19: Er3+, Yb3+, Cr3+ phosphors were designed to display dual-excited ATQ. Under 980 nm excitation, the Yb/Er upconversion process causes the Yb3+→Er3+→Cr3+ energy transfer, resulting in a 2.7-fold Cr3+ intensity enhancement and an Sr-max of 2.88% K-1 at 480 K. Moreover, co-modulating excitation wavelength and thermal stimulation leads to a gradual change in the emission color from green to orange-red, which is an interesting feature for anti-counterfeiting optical markers. Finally, the downshifting process under 468 nm excitation triggers a reverse Cr3+→Er3+/Yb3+ energy transfer process. This efficient conversion from UV-visible light to NIR radiation shows high application potential in solar cells and LED devices.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/69a767b3badf0bb9e87e2016https://doi.org/10.1364/ol.587457
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