Branched Alkyl Chains Tunable Organic‐Inorganic Hybrid Manganese Halides for Anti‐counterfeiting, White Light‐emitting Diode and X‐ray Imaging Applications

J Jing‐Hua Chen (Lehn Institute of Functional Materials GBRCE For Functional Molecular Engineering IGCME School of Chemistry Sun Yat‐sen University Guangzhou 510275 China) J Jian‐Bin Luo (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 China) Q Qing‐Peng Peng (Lehn Institute of Functional Materials GBRCE For Functional Molecular Engineering IGCME School of Chemistry Sun Yat‐sen University Guangzhou 510275 China) Z Zi‐Lin He (Lehn Institute of Functional Materials GBRCE For Functional Molecular Engineering IGCME School of Chemistry Sun Yat‐sen University Guangzhou 510275 China) J Jun‐Hua Wei (Lehn Institute of Functional Materials GBRCE For Functional Molecular Engineering IGCME School of Chemistry Sun Yat‐sen University Guangzhou 510275 China) D Dai‐Bin Kuang (Lehn Institute of Functional Materials GBRCE For Functional Molecular Engineering IGCME School of Chemistry Sun Yat‐sen University Guangzhou 510275 China)

Abstract

Abstract 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 (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 (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 −1 and a low limit of detection (LOD) of 10.45 nGy s −1 . Additionally, the glassy (4‐DBATBP)MnBr 4 demonstrates an impressive spatial resolution of 25 lp mm −1 . (4‐DBATBP)MnBr 4 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.

Article Details

Volume / Issue Vol. 64, Issue 29
Published July 14, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (6)

J

Jing‐Hua Chen

Lehn Institute of Functional Materials GBRCE For Functional Molecular Engineering IGCME School of Chemistry Sun Yat‐sen University Guangzhou 510275 China

J

Jian‐Bin Luo

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 China

Q

Qing‐Peng Peng

Lehn Institute of Functional Materials GBRCE For Functional Molecular Engineering IGCME School of Chemistry Sun Yat‐sen University Guangzhou 510275 China

Z

Zi‐Lin He

Lehn Institute of Functional Materials GBRCE For Functional Molecular Engineering IGCME School of Chemistry Sun Yat‐sen University Guangzhou 510275 China

J

Jun‐Hua Wei

Lehn Institute of Functional Materials GBRCE For Functional Molecular Engineering IGCME School of Chemistry Sun Yat‐sen University Guangzhou 510275 China

D

Dai‐Bin Kuang

Lehn Institute of Functional Materials GBRCE For Functional Molecular Engineering IGCME School of Chemistry Sun Yat‐sen University Guangzhou 510275 China