Sun Tianying, Li Yuhua, Ho Wai Lok, Zhu Qi, Chen Xian, Jin Limin, Zhu Haomiao, Huang Bolong, Lin Jun, Little Brent E, Chu Sai Tak, Wang Feng
Department of Materials Science and Engineering, City University of Hong Kong, 83 Tat Chee Avenue, Hong Kong, SAR, China.
City University of Hong Kong Shenzhen Research Institute, Shenzhen, 518057, China.
Nat Commun. 2019 Apr 18;10(1):1811. doi: 10.1038/s41467-019-09850-2.
The applications of lanthanide-doped upconversion nanomaterials are limited by unsatisfactory brightness currently. Herein, a general strategy is proposed for boosting the upconversion efficiency in Er ions, based on combined use of a core-shell nanostructured host and an integrated optical waveguide circuit excitation platform. A NaErF@NaYF core-shell nanoparticle is constructed to host the upconversion process for minimizing non-radiative dissipation of excitation energy by surface quenchers. Furthermore, an integrated optical microring resonator is designed to promote absorption of excitation light by the nanoparticles, which alleviates quenching of excited states due to cross-relaxation and phonon-assisted energy transfer. As a result, multiphoton upconversion emission with a large anti-Stokes shift (greater than 1150 nm) and a high energy conversion efficiency (over 5.0%) is achieved under excitation at 1550 nm. These advances in controlling photon upconversion offer exciting opportunities for important photonics applications.
目前,镧系掺杂上转换纳米材料的应用受到亮度不理想的限制。在此,基于核壳纳米结构主体和集成光波导电路激发平台的联合使用,提出了一种提高铒离子上转换效率的通用策略。构建了NaErF@NaYF核壳纳米粒子来承载上转换过程,以最小化表面猝灭剂对激发能量的非辐射耗散。此外,设计了一种集成光学微环谐振器来促进纳米粒子对激发光的吸收,这减轻了由于交叉弛豫和声子辅助能量转移导致的激发态猝灭。结果,在1550nm激发下实现了具有大反斯托克斯位移(大于1150nm)和高能量转换效率(超过5.0%)的多光子上转换发射。这些在控制光子上转换方面的进展为重要的光子学应用提供了令人兴奋的机会。