介孔材料
材料科学
纳米反应器
发光
纳米颗粒
纳米结构
荧光粉
纳米复合材料
纳米技术
余辉
持续发光
化学工程
光电子学
热释光
化学
物理
伽马射线暴
天文
工程类
生物化学
催化作用
作者
Zhanjun Li,Yuanwei Zhang,Xiang Wu,Xiao-Qiong Wu,Rohit Maudgal,Hongwu Zhang,Gang Han
标识
DOI:10.1002/advs.201500001
摘要
Near‐infrared (NIR) persistent phosphor ZnGa 2 O 4 :Cr 3+ (ZGC) has unique deep‐tissue rechargeable afterglow properties. However, the current synthesis leads to agglomerated products with irregular morphologies and wide size distributions. Herein, we report on in vivo rechargeable mesoporous SiO 2 /ZnGa 2 O 4 :Cr 3+ (mZGC) afterglow NIR‐emitting nanocomposites that are made by a simple, one‐step mesoporous template method. At less than 600 °C, pores in mesoporous silica nanoparticles (MSNs) act as nanoreactors to generate in situ ZnGa 2 O 4 :Cr 3+ NIR‐persistent phosphors. The as‐synthesized mZGC preserves defined size, morphology, and mesoporous nanostructure of the MSNs. The persistent luminescence of the as‐synthesized mZGC is recharged in a simulated deep‐tissue environment (e.g., ≈8 mm pork slab) in vitro by using red light (620 nm). Moreover, mZGC can be repeatedly activated in vivo for persistent luminescence imaging in a live mouse model by using white LED as a light source. Our concept of utilizing mesoporous silica as nanoreactor to fabricate ZGC PL nanoparticles with controllable morphology and preserved porous nanostructure paves a new way to the development and the wide application of deep tissue rechargeable ZGC in photonics and biophotonics.
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