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March 3, 2026
Thermally controlled Er3+-Ho3+ energy transfer in NaYGeO4 olivine phosphor for enhanced NIR-II luminescence and sensitive thermometry
HZ
Hui Zeng
Qingdao University
XF
Xiaolang Fan
YW
Yangbo Wang
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Key Points
Enhanced NIR-II luminescence achieved through efficient energy transfer mechanisms.
Key evidence shows 25% increase in luminescence with optimized thermal conditions.
Assessment using energy transfer theory highlights olivine phosphor as a viable material.
Findings suggest applications in both luminescence technologies and precision thermometry.
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Thermally controlled Er3+-Ho3+ energy transfer in NaYGeO4 olivine phosphor for enhanced NIR-II luminescence and sensitive thermometry | Synapse
Cite This Study
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Zeng et al. (Wed,) studied this question.
synapsesocial.com/papers/69a75be0c6e9836116a24022
https://doi.org/https://doi.org/10.1016/j.materresbull.2026.114033