材料科学
热释光
钙钛矿(结构)
双功能
光电子学
灵敏度(控制系统)
荧光粉
俘获
研磨
载流子
电荷(物理)
机械能
光子
光子学
储能
纳米技术
记录媒体
辐射
辐照
光子能量
衍射
计算机数据存储
同步辐射
分析化学(期刊)
能量(信号处理)
作者
Jingyan Peng,Tianshuai Lyu,Zijun Huang,Kebin Ni,Zhanhua Wei
摘要
ABSTRACT The ability to store and release charge carriers in response to external stimuli is fundamental to advanced technologies in radiation detection, imaging, and sensing. However, combining good sensitivity with multimodal functionality in a single material has remained challenging. Here we report that Mn 2+ ‐doped Cs 3 Cd 2 Cl 7 exhibits dual‐mode charge storage depending on the stimulation pathway. Under X‐ray irradiation, the material stores energy in multiple defect states, producing six thermoluminescence (TL) glow peaks between 141 and 450 K. The integrated TL intensity is ∼4.7 times higher than that of the commercial X‐ray storage phosphor BaFBr(I):Eu 2+ , demonstrating good sensitivity suitable for temperature‐resilient radiography. In contrast, mechanical grinding of the same crystals in an agate mortar induces a distinct charge trapping behavior, generating two TL peaks at approximately 445 and 607 K. This force‐induced charge storage enables the recording of mechanical events for delayed readout, offering a pathway for non‐real‐time force sensing. The same material thus serves dual functions, delivering bifunctional X‐ray imaging and mechanical force recording through distinct energy release pathways. Our findings establish Cs 3 Cd 2 Cl 7 :Mn 2+ perovskite as a stimuli‐responsive platform and open opportunities for multimodal sensing technologies where both radiation and mechanical histories can be stored and retrieved on demand.
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