Achieving Color‐Tunable Long Persistent Luminescence in Cs2CdCl4 Ruddlesden‐Popper Phase Perovskites

Author:

Liu Ya12,Yan Shuangpeng2,Wang Tianchi2,He Qingshan1,Zhu Xiaodie2,Wang Chao2,Liu Daiyuan2,Wang Ting3ORCID,Xu Xuhui2,Yu Xue1ORCID

Affiliation:

1. School of Mechanical Engineering Institute for Advanced Materials Deformation and Damage from Multi-Scale Chengdu University Chengdu 610106 P. R. China

2. Faculty of Materials Science and Engineering Key Laboratory of Advanced Materials of Yunnan Province Kunming University of Science and Technology Kunming 650093 P. R. China

3. College of Materials and Chemistry & Chemical Engineering Chengdu University of Technology Chengdu 610106 P. R. China

Abstract

AbstractTwo‐dimensional (2D)‐halide perovskites have been enriched over recent years to offer remarkable features from diverse chemical structures and environmental stability endowed with exciting functionalities in photoelectric detectors and phosphorescence systems. However, the low conversion efficiency of singlet to triplet in 2D hybrid halide perovskites reduces phosphorescence lifetimes. In this study, the long persistent luminescence of 2D all‐inorganic perovskites with a self‐assembled 2D interlayer galleries structure is investigated. The results show that the decay time of the long persistent luminescence increases from 450 s to 600 s, and the luminescence color changes from cyan to orange, and the thermal stability of photoluminescence enhances dramatically after replacing Cd2+ by appropriate Mn2+ ions in 2D Cs2CdCl4 Ruddlesden‐Popper phase perovskites. Furthermore, diversified anti‐counterfeiting modes are fabricated to highlight the promising applications of Cs2CdCl4 perovskite systems with tunable persistent luminescence in advanced anti‐counterfeiting. Therefore, our studies provide a novel model for realizing tunable long persistent luminescence of perovskite with 2D self‐assembled layered structure for advanced anti‐counterfeiting.

Publisher

Wiley

Subject

General Chemistry,Catalysis

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