材料科学
发光
光电子学
电池(电)
小学(天文学)
纳米技术
化学工程
电极
无机化学
有机自由基电池
作者
Xiangyu Zhang,Yuanyuan Hu,Chunlong Xu,Lin Cheng,Dangli Gao
标识
DOI:10.1021/acsami.6c09080
摘要
Rational design of Eu 2+ -activated red phosphors under visible light excitation remains a critical challenge in various fields such as photonics, optoelectronics, and white-light-emitting diodes. Herein, we engineer high density traps with a double metastable state in the SrZnOS matrix by constructing the reversible infinitesimal photoelectrochemical layered micro-unit battery structure via co-doping Eu 2+ and Dy 3+ ions for achieving robust red luminescence. The resulting SrZnOS:Eu 2+,Dy 3+ phosphor exhibits intense red photoluminescence at 620 nm under 468 nm excitation, matching the emission intensity of commercial SrAl 2 O 4:Eu 2+,Dy 3+ under UV irradiation. Notably, this material exhibits multi-modal luminescence, encompassing red persistent luminescence along with tunable photo/thermo/mechano-stimulated luminescence. These properties make SrZnOS:Eu 2+,Dy 3+ highly promising for applications in secure information storage and advanced displays. Our work establishes a design principle for manipulating multi-mode luminescence in oxide hosts through photoelectrochemical cell engineering, opening avenues for next-generation functional materials.
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