材料科学
近红外光谱
自体荧光
荧光
生物相容性材料
介孔二氧化硅
介孔材料
穿透深度
纳米技术
纳米颗粒
散射
光学
生物医学工程
催化作用
化学
物理
医学
生物化学
作者
Aishwarya Satpathy,Wen‐Tse Huang,Ming‐Hsien Chan,Ting‐Yi Su,Mikołaj Kamiński,Natalia Majewska,Sebastian Mahlik,Grzegorz Leniec,S.M. Kaczmarek,Michael Hsiao,Ru‐Shi Liu
标识
DOI:10.1002/adom.202300321
摘要
Abstract In the biomedical field, the use of fluorescence imaging in the second near‐infrared (NIR‐II) region is growing rapidly because it imparts the advantages of reduced autofluorescence and low photon scattering. The advantage of reduced scattering is that it increases penetration depth in vivo and improves imaging clarity. Herein, this work uses mesoporous silica, a biocompatible template that can be easily modified, functionalized, and loaded with drugs for use in several bioapplications. The ZnGa 2 O 4 spinel oxide system is integrated into mesoporous silica and different concentrations of Cr 3+ and Ni 2+ are loaded in octahedral sites to obtain the highest emission intensity in the NIR‐II region at 1285 nm via energy transfer from Cr 3+ to Ni 2+ . Given that only a few nanophosphor systems with emission in the NIR‐II region are available, this work attempts to establish emission in the NIR‐II and NIR‐I regions to obtain images in vivo with an increased penetration depth to 5 mm and improved clarity for bioimaging purposes. This system will open the door for biomedical research on other NIR‐II nanophosphors.
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