磷光
密度泛函理论
材料科学
脱质子化
盐(化学)
余辉
鞣花酸
光化学
荧光粉
纳米技术
化学工程
量子点
结合能
基质(化学分析)
自然(考古学)
MXenes公司
溶剂
单层
可持续能源
能量密度
甲基橙
合理设计
四方晶系
原位
有机化学
作者
Yujie Bai,Yingxiang Zhai,Mingrui Li,Kai Wang,Zijing Pan,M Wang,Luyao Wang,Chenhui Yang,Xue Liu,Shujun Li,Zhijun Chen
摘要
ABSTRACT Developing sustainable room‐temperature phosphorescent (RTP) materials from natural sources is highly desirable, yet achieving color‐tunable and long‐wavelength RTP without foreign sensitizers is difficult. Here, we report a facile precipitated salt confinement strategy to activate efficient and color‐tunable RTP from ellagic acid (EA). By controlling the deprotonation degree of EA and conducting in situ co‐precipitation with magnesium ions, a rigid matrix is constructed, resulting in EA@Mg(OH) 2 composites that exhibit phosphorescence color progressively shifting from green to orange (545–590 nm) with lifetimes up to 687.19 ms. Density functional theory (DFT) calculations reveal that deprotonation narrows the emitter's energy gap and strengthens its binding to the inorganic matrix, cooperatively enabling the color shift and the suppression of non‐radiative decay. We further demonstrate applications in multi‐color afterglow paper, textiles, and anti‐counterfeiting patterns, establishing a novel paradigm for creating high‐performance, sustainable RTP materials from abundant natural resources.
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