化学
镧系元素
纳米晶
兴奋剂
猝灭(荧光)
动力学(音乐)
曲面(拓扑)
化学物理
纳米技术
化学工程
物理化学
凝聚态物理
荧光
光学
离子
有机化学
几何学
工程类
物理
材料科学
数学
声学
作者
Noah J. J. Johnson,Sha He,Shuo Diao,Emory M. Chan,Hongjie Dai,Adah Almutairi
摘要
Luminescence quenching at high dopant concentrations generally limits the dopant concentration to less than 1–5 mol% in lanthanide-doped materials, and this remains a major obstacle in designing materials with enhanced efficiency/brightness. In this work, we provide direct evidence that the major quenching process at high dopant concentrations is the energy migration to the surface (i.e., surface quenching) as opposed to the common misconception of cross-relaxation between dopant ions. We show that after an inert epitaxial shell growth, erbium (Er3+) concentrations as high as 100 mol% in NaY(Er)F4/NaLuF4 core/shell nanocrystals enhance the emission intensity of both upconversion and downshifted luminescence across different excitation wavelengths (980, 800, and 658 nm), with negligible concentration quenching effects. Our results highlight the strong coupling of concentration and surface quenching effects in colloidal lanthanide-doped nanocrystals, and that inert epitaxial shell growth can overcome concentration quenching. These fundamental insights into the photophysical processes in heavily doped nanocrystals will give rise to enhanced properties not previously thought possible with compositions optimized in bulk.
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