镧系元素
光子上转换
发光
材料科学
纳米晶
激发态
光电子学
离子
光化学
纳米技术
化学
原子物理学
物理
有机化学
作者
Xinyan Zhu,Mingzhu Yang,Hongxin Zhang
摘要
Abstract Recently, lanthanide (Ln) luminescent nanocrystals have attracted increasing attention in various fields such as biomedical imaging, lasers, and anticounterfeiting. However, due to the forbidden 4f–4f transition of lanthanide ions, the absorption cross‐section and luminescence brightness of lanthanide nanocrystals are limited. To address the challenge, we constructed an optical oscillator‐like system to repeatedly simulate lanthanide nanocrystals to enhance the absorption efficiency of lanthanide ions on excitation photons. In this optical system, the upconversion luminescence (UCL) of Tm 3+ emission of ~450 nm excited by a 980 nm laser can be amplified by a factor beyond 10 4 . The corresponding downshifting luminescence of Tm 3+ at 1460 nm was enhanced by three orders of magnitude. We also demonstrated that the significant luminescence enhancement in the designed optical oscillator‐like system was general for various lanthanide nanocrystals including NaYF 4 :Yb 3+ /Ln 3+ , NaErF 4 @NaYF 4 and NaYF 4 :Yb 3+ /Ln 3+ @NaYF 4 :Yb 3+ @NaYF 4 (Ln = Er, Tm, Ho) regardless of the wavelengths of excitation sources (808 and 980 nm). The mechanism study revealed that both elevated laser power in the optical system and multiple excitations on lanthanide nanocrystals were the main reason for the luminescence amplification. Our findings may benefit the future development of low‐threshold upconversion and downshifting luminescence of lanthanide nanocrystals and expand their applications.
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