光子上转换
镧系元素
激发
激子
材料科学
光电子学
光子
继电器
物理
离子
发光
化学物理
纳米技术
化学
功率(物理)
光学
凝聚态物理
有机化学
量子力学
作者
Sanyang Han,Zhigao Yi,Jiangbin Zhang,Qifei Gu,Liangliang Liang,Xian Qin,Jiahui Xu,Y. H. Wu,Hui Xu,Akshay Rao,Xiaogang Liu
标识
DOI:10.1038/s41467-021-23967-3
摘要
Abstract Exploration of upconversion luminescence from lanthanide emitters through energy migration has profound implications for fundamental research and technology development. However, energy migration-mediated upconversion requires stringent experimental conditions, such as high power excitation and special migratory ions in the host lattice, imposing selection constraints on lanthanide emitters. Here we demonstrate photon upconversion of diverse lanthanide emitters by harnessing triplet exciton-mediated energy relay. Compared with gadolinium-based systems, this energy relay is less dependent on excitation power and enhances the emission intensity of Tb 3+ by 158-fold. Mechanistic investigations reveal that emission enhancement is attributable to strong coupling between lanthanides and surface molecules, which enables fast triplet generation (<100 ps) and subsequent near-unity triplet transfer efficiency from surface ligands to lanthanides. Moreover, the energy relay approach supports long-distance energy transfer and allows upconversion modulation in microstructures. These findings enhance fundamental understanding of energy transfer at molecule-nanoparticle interfaces and open exciting avenues for developing hybrid, high-performance optical materials.
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