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首页|期刊导航|发光学报|动态缺陷导致Na3Sc2(PO4)3:Yb3+,Er3+材料上转换和下转移发光不同热猝灭行为研究

动态缺陷导致Na3Sc2(PO4)3:Yb3+,Er3+材料上转换和下转移发光不同热猝灭行为研究OA北大核心CSTPCD

Distinct Thermal Quenching of Upconversion and Downshifting Luminescence Caused by Dynamic Defects in Ion-conductive Na3Sc2(PO4)3:Yb3+,Er3+Phosphor

中文摘要英文摘要

掺Eu2+的离子导体Na3Sc2(PO4)3 具有优异的抗热猝灭性能,是一种很有前景的大功率照明用发光材料.然而,其负热猝灭机理仍有待深入研究.本文以Yb3+/Er3+的f-f跃迁上转换和下转移窄带发射而非更易受干扰的Eu2+d-f跃迁发射为研究对象,旨在获得更清晰的机理.结果表明,热致缺陷/离子的动态迁移能促进高温下辐射跃迁和抑制非辐射跃迁,导致上转换发光具有显著的负热猝灭,下转移发光热猝灭较小.其中,布居速率较慢的上转换过程更容易受到时间尺度与之相当的Na+/空位迁移过程的影响.本研究可为理解发光材料热猝灭机制提供另一种视角.

Eu2+-doped Na3Sc2(PO4)3 ionic conductor possesses superior thermal quenching(TQ)resistance,which is considered as a promising phosphor for high-power lighting applications.Yet the underlying mechanism of negative ther-mal quenching(NTQ)is not fully understood.In this study,we focus on upconversion(UC)and downshifting(DS)lumi-nescence of Yb3+/Er3+with f-f transition rather than susceptible d-f transition of Eu2+in Na3Sc2(PO4)3,aiming to get a more insightful view.The results show that thermally accelerated dynamic defects/ions contributes to the significant negative thermal quenching(NTQ)of UC luminescence and thermally stabilized DS luminescence by promoting the radiative transi-tion and suppressing the non-radiative transition.The UC process with slow population rate is more susceptible to perturba-tion of Na+migration process with time scale equivalent to that of the former,resulting in evident NTQ of UC lumines-cence.This research opens an avenue for understanding the NTQ mechanism of luminescence via dynamic defects/ions.

汪世杰;王映涵;陶正仁;安正策;叶柿

华南理工大学 材料科学与工程学院,发光材料与器件国家重点实验室,广东省光纤激光材料与应用技术重点实验室,广东 广州 510641

物理学

Na3Sc2(PO4)3:Yb3+,Er3+上转换发光下转移发光负热猝灭能量传递

Na3Sc2(PO4)3:Yb3+,Er3+upconversion luminescencedownshifting luminescencenegative thermal quenchingenergy transfer

《发光学报》 2024 (006)

863-875 / 13

国家自然科学基金(52072126)Supported by National Natural Science Foundation of China(52072126)

10.37188/CJL.20240073

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