机械容积
检出限
灵敏度(控制系统)
分析化学(期刊)
材料科学
化学
放射化学
荧光粉
光电子学
色谱法
电子工程
工程类
作者
Yu-Han Jiang,Shuangqiang Fang,Tianchun Lang,Haoliang Cheng,Jiaqi Ou,Lu Yin,Jiali Yu,Tiancheng Zhang,Le Wang
标识
DOI:10.1002/lpor.202501643
摘要
Abstract Mechanoluminescent (ML) materials have emerged as promising candidates for self‐powered sensing systems, yet the simultaneous decoupling of stress and temperature remains a critical challenge. Here, a novel Eu 2+ ,Sm 3+ co‐doped SrF 2 ‐based ML material is presented that enables orthogonal stress‐temperature dual‐parameter sensing through a triboelectricity‐driven ML mechanism. By leveraging the distinct emission behaviors of Eu 2+ (350–550 nm) and Sm 3+ (550–750 nm), the integrated ML intensity exhibits a linear response to stress, while the ML intensity ratio of Eu 2+ and Sm 3+ follows an exponential correlation with temperature, yielding high maximum absolute (0.162 K −1 ) and relative (0.05%·K −1 ) sensitivities. Crucially, this material exhibits a unique ML property: ML color changes exclusively with the single parameter ‐ temperature, while the integral ML intensity corresponds to the magnitude of force. Thus, using OpenCV visual recognition, temperature signals can be independently decoupled within a complicated force‐temperature conditions, eliminating cross‐sensitivity. A graded alarm system based on Hue, Saturation and Value chromaticity analysis validates its capacity of real‐time, non‐contact temperature monitoring in simulated industrial scenarios. This work establishes a paradigm for dual‐mode optical decoupling in ML materials, advancing applications in precise perception of various parameters in a multi‐physics field coupling environment.
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