材料科学
余辉
热液循环
机制(生物学)
水热合成
纳米技术
工程物理
矿物学
化学工程
哲学
化学
物理
伽马射线暴
认识论
天文
工程类
作者
Jingui Li,Hao‐Tian Wu,Baoxiang Wang,Qisheng He,Chenxi Guo,Weiyan Lei,Jiashuang Li,Zuotao Liu,Yi Shen
标识
DOI:10.1177/02670836241298113
摘要
Near-infrared long-afterglow materials present significant promise for applications in tracking and imaging technologies. Among these materials, chromium-doped stannates and gallium germanates are crucial, with Mn 2+ -doped magnesium germanate standing out for its intense afterglow within the 650–1100 nm spectrum, ideal for biomedical use. However, conventional high-temperature synthesis techniques yield particles that are too large for effective biomedical applications. To surmount this challenge, this article turned to hydrothermal synthesis to produce MgGeO 3 :Mn 2+ ,Yb 3+ with enhanced properties. In order to further the research the impact of pH levels and chelating agent ratios on the material's structure, as well as delved into the intricacies of their luminescence mechanisms and structural attributes.
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