机械容积
化学
热致变色
卤化物
光电效应
发光
钙钛矿(结构)
光电子学
灵活性(工程)
带隙
硫化镉
纳米技术
比色法
压力(语言学)
灵敏度(控制系统)
工作(物理)
红移
光热治疗
联轴节(管道)
光化学
化学工程
桥(图论)
紫外线
无机化学
滴定法
兴奋剂
光刻胶
反射器(摄影)
作者
X Chen,Te Zhang,Wenda Sun,Yue Li,Yiwei Wang,Yi-Xiang Wang,Huanxin Yang,Libing Zhang,Yue Zhao,Xiyan Li
标识
DOI:10.1021/acs.inorgchem.6c01677
摘要
The integration of mechanoluminescence (ML) and thermochromic behavior into a single material holds significant promise for applications in flexible electronics, multidimensional sensing, and interactive devices. Inorganic halide perovskites, owing to their intrinsic structural flexibility and tunable bandgap, are excellent candidates for multifunctional materials. However, research into these combined functionalities has remained notably limited to date. To bridge this gap and explore the potential of such material systems for intelligent sensing applications, this study develops a lead-free Cs2ZrCl6: Sb3+ perovskite that exhibits dynamically tunable ML color and thermally activated emission switching. Through strategic doping, we combined the intrinsic blue ML of the host with incorporated red-emitting centers, enabling colorimetric pressure sensing. The material achieved a remarkable maximum relative sensitivity (Sr) of 1% K-1at 300 K. Furthermore, we integrated it into a novel photoelectric system as a proof of concept that simultaneously characterized optical intensity and chromaticity. This work not only elucidates the luminescence mechanisms in lead-free perovskites but also establishes a new paradigm for developing intelligent, self-diagnostic ML sensors.
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