Persistent Luminescence Induced by Upconversion: An Alternative Approach for Rechargeable Bio‐Emitters

材料科学 光子上转换 发光 持续发光 激光器 能量转移 纳米技术 纳米探针 纳米颗粒 激发 光电子学 光学 工程物理 电气工程 物理 工程类 热释光
作者
Luidgi Giordano,Guanyu Cai,Johanne Séguin,Jianhua Liu,Cyrille Richard,Lucas Carvalho Veloso Rodrigues,Bruno Viana
出处
期刊:Advanced Optical Materials [Wiley]
卷期号:11 (11) 被引量:19
标识
DOI:10.1002/adom.202201468
摘要

Abstract The charging of persistent luminescence using an infrared laser as a power source and an upconversion process is a recently proposed trend in the field of persistent luminescence that allows expansion of the potential applications for these materials. In bioimaging at nanoscale, it allows for increased rechargeability capacity, as the excitation wavelength is fully inside the biological window. In this work, a novel approach is proposed to this phenomenon using energy transfer on associated materials. For this purpose, β‐NaGd 0.8 Yb 0.17 Er 0.03 F 4 nanoparticles, known for their efficient upconversion, and Zn 1.33 Ga 1.335 Sn 0.33 Cr 0.005 O 4 nanoparticles, known for their persistent luminescence properties, have been synthesized and associated through a dry impregnation method. The obtained hybrid material is found to present persistent luminescence at 700 nm after charging with a 980 nm laser. A mechanism is proposed to explain this energy transfer process and the capabilities of the hybrid material as rechargeable persistent nanoprobe for in vivo applications are shown.

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