Organic–Inorganic Hybrid Manganese(II) Halides with Reversible Thermochromic Luminescence for Anti-Counterfeiting and X-ray Imaging
作者:Wenzhen Lv, Ying Tang, Chaofei Han, Zhenzhen Miao, Chengxi Sun, Ligang Xu, Guangbao Wu, Zhuang Liu, Ye Tao, Runfeng Chen · 发表于:Inorganic Chemistry · 年份:2025 · DOI:10.1021/acs.inorgchem.5c01148 · 被引用次数:9 · 研究领域:Lanthanide and Transition Metal Complexes、Luminescence Properties of Advanced Materials、Luminescence and Fluorescent Materials
Thermochromic scintillators with high electron and hole generation capacity after X-ray irradiation have gained significant attention for anticounterfeiting and X-ray imaging applications. However, achieving luminescent compounds with highly efficient and reversible thermochromic luminescence and radioluminescence remains a significant challenge. In this study, we reported two novel and cost-effective zero-dimensional (0D) Mn(II)-based halide hybrids, designated as (4-PP) 2 MnX 4 (4-PP = 4-phenylpyridine; X = Cl, Br), with bright narrow-band green emissions and remarkably high photoluminescence quantum yields of 90.7% and 94.6%, respectively. Notably, a distinct and reversible thermochromic behavior, shifting from green to red emission with temperature variation, was observed under ambient conditions. Furthermore, (4-PP) 2 MnX 4 (X = Cl, Br) demonstrated impressive steady-state X-ray light yields of 42 000 and 48 000 photons MeV –1, alongside low detectable limits of 79.2 and 56.6 nGyair s –1 . The combination of pronounced color changes and exceptional radiative properties positions these materials as promising candidates for anticounterfeiting applications and in situ thermally responsive X-ray imaging. This research marks a significant advance in the design of high-efficiency thermochromic materials, offering a blueprint for future research into multifunctional thermochromic scintillators tailored for advanced X-ray imaging technologies.