激活剂(遗传学)
光子上转换
镧系元素
材料科学
镨
猝灭(荧光)
离子
纳米颗粒
荧光
激发
镱
光化学
纳米技术
分析化学(期刊)
兴奋剂
光电子学
化学
光学
色谱法
物理
有机化学
冶金
基因
量子力学
生物化学
作者
D. J. Huang,Feng Li,Hans Ågren,Guanying Chen
标识
DOI:10.1038/s41467-025-59452-4
摘要
Lanthanide-doped upconversion nanoparticles are promising for applications ranging from biosensing, bioimaging to solid-state lasing. However, their brightness remains limited by the concentration quenching effect of lanthanide activator ions, which greatly restricts their utility. Here, we develop a heterogeneous core-shell-shell nanostructure based on hexagonal NaYF4, in which Tm3+ activator and Yb3+ sensitizer are separated into the core and inner shell, while the outmost shell is used to suppress surface quenching effects. We show that this design can alleviate the activator concentration quenching effect, resulting in optimal Tm3+ concentration increasing from 1% to 8% at sub-100 W/cm2 irradiance, compared with the canonical core-only NaYF4:Yb3+/Tm3+. Moreover, under high excitation irradiance (20 MW/cm2), the optimal Tm3+ concentration could be further increased to 50%. Mechanistic investigations reveal that the spatial separation of sensitizer and activator effectively suppresses the back energy transfer from Tm3+ to Yb3+, driving the increase of optimal activator concentration. These findings enhance our understanding of lanthanide concentration quenching effect, unleashing opportunities for developing bright upconverting materials.
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