荧光粉
量子效率
光致发光
热稳定性
价(化学)
材料科学
量子产额
发光二极管
光电子学
八面体
红外线的
发光
电致发光
二极管
晶体结构
纳米技术
化学
光学
结晶学
物理
有机化学
荧光
图层(电子)
作者
Dongjie� Liu,Guogang Li,Peipei Dang,Qianqian Zhang,Yi Wei,Lei Qiu,Hongzhou Lian,Mengmeng Shang,Jun Lin
标识
DOI:10.1038/s41377-023-01283-3
摘要
Achievement of high photoluminescence quantum efficiency and thermal stability is challenging for near-infrared (NIR)-emitting phosphors. Here, we designed a "kill two birds with one stone" strategy to simultaneously improve quantum efficiency and thermal stability of the NIR-emitting Ca3Y2-2x(ZnZr)xGe3O12:Cr garnet system by chemical unit cosubstitution, and revealed universal structure-property relationship and the luminescence optimization mechanism. The cosubstitution of [Zn2+-Zr4+] for [Y3+-Y3+] played a critical role as reductant to promote the valence transformation from Cr4+ to Cr3+, resulting from the reconstruction of octahedral sites for Cr3+. The introduction of [Zn2+-Zr4+] unit also contributed to a rigid crystal structure. These two aspects together realized the high internal quantum efficiency of 96% and excellent thermal stability of 89%@423 K. Moreover, information encryption with "burning after reading" was achieved based on different chemical resistance of the phosphors to acid. The developed NIR-emitting phosphor-converted light-emitting diode demonstrated promising applications in bio-tissue imaging and night vision. This work provides a new perspective for developing high-performance NIR-emitting phosphor materials.
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