Chen Jing-Hua, Luo Jian-Bin, Peng Qing-Peng, He Zi-Lin, Wei Jun-Hua, Kuang Dai-Bin
Key Laboratory of Bioinorganic and Synthetic Chemistry of Ministry of Education, Lehn Institute of Functional Materials, GBRCE for Functional Molecular Engineering, School of Chemistry, IGCME, Sun Yat-Sen University, Guangzhou, 510275, China.
Angew Chem Int Ed Engl. 2025 Jul;64(29):e202508536. doi: 10.1002/anie.202508536. Epub 2025 May 20.
Manganese-based organic-inorganic metal halides (Mn-based OIMHs) scintillators have aroused a research upsurge due to their outstanding photoluminescence performance, low toxicity, and tunable structures. Herein, we demonstrate a molecular engineering strategy that synergistically enhances luminescence efficiency and radiation sensitivity by systematic elongation of branched alkyl chains in phosphonium-based cations. The (4-DEATBP)MnBr (4-DEATBP = (4-(diethylamino)butyl)triphenylphosphonium) crystal exhibits remarkable thermochromic luminescence properties and anti-thermal quenching effect, highlighting the application potential in high-temperature anti-counterfeiting and information encryption. Through effective chain elongation, the (4-DBATBP)MnBr (4-DBATBP = (4-(dibutylamino)butyl)triphenylphosphonium) single crystal achieves an impressive photoluminescence quantum yield (PLQY) of 100% and exhibits superior performance under X-ray irradiation, with a high light yield of 67953 photons MeV and a low limit of detection (LOD) of 10.45 nGy s. Additionally, the glassy (4-DBATBP)MnBr demonstrates an impressive spatial resolution of 25 lp mm. (4-DBATBP)MnBr shows great application potential in the fields of white light-emitting diode (WLED) and express security check due to its outstanding luminescence performance. This work not only offers two kinds of new Mn-based OIMH materials but also authenticates the role of extending the branched alkyl chain for improving the photoluminescence performance.
基于锰的有机-无机金属卤化物(Mn基OIMHs)闪烁体因其出色的光致发光性能、低毒性和可调控结构而引发了研究热潮。在此,我们展示了一种分子工程策略,通过系统地延长鏻基阳离子中的支链烷基链,协同提高发光效率和辐射敏感性。(4-DEATBP)MnBr(4-DEATBP = (4-(二乙氨基)丁基)三苯基鏻)晶体表现出显著的热致变色发光特性和抗热猝灭效应,突出了其在高温防伪和信息加密方面的应用潜力。通过有效的链延长,(4-DBATBP)MnBr(4-DBATBP = (4-(二丁氨基)丁基)三苯基鏻)单晶实现了令人印象深刻的100%光致发光量子产率(PLQY),并在X射线照射下表现出优异性能,高光产额为67953光子/MeV,低检测限(LOD)为10.45 nGy/s。此外,玻璃态的(4-DBATBP)MnBr表现出令人印象深刻的25 lp/mm的空间分辨率。(4-DBATBP)MnBr因其出色的发光性能在白光发光二极管(WLED)和快速安检领域显示出巨大的应用潜力。这项工作不仅提供了两种新型的Mn基OIMH材料,还验证了延长支链烷基链对改善光致发光性能的作用。