Temperature‐Dependent Color‐Tunable Afterglow in Zirconium‐Doped CsCdCl3 Perovskite for Advanced Anti‐Counterfeiting and Thermal Distribution Detection

Author:

Zhu Xuanyu12,Gu Tingxiang1,Zhao Lei3,Gao Wei2,Liu Haozhe1,Nie Lin1,Zhao Feng4,Yue Yang4,He Qingshan4,An Xin4,Hao Puyan3,Yakovlev Alexey Nikolaevich5,Hu Tingting5,Yu Siufung26,Xu Xuhui7,Yu Xue4ORCID,Wang Ting12

Affiliation:

1. College of Materials and Chemistry & Chemical Engineering Chengdu University of Technology Chengdu 610059 China

2. The Department of Applied Physics The Hong Kong Polytechnic University Hong Kong 999999 China

3. Collaborative Innovation Center of Rare‐Earth Optical Functional Materials and Devices Development School of Physics and Opto‐Electronic Technology Baoji University of Arts and Sciences Baoji 721016 China

4. School of Mechanical Engineering, Institute for Advanced Materials Deformation and Damage from Multi‐Scale Chengdu University Chengdu 610106 China

5. Institute of Chemical and Oil‐Gas Technologies Т.F. Gorbachev Kuzbass State Technical University 28, Vesennyaya Street Kemerovo 650000 Russia

6. Shenzhen Research Institute The Hong Kong Polytechnic University Shenzhen 518000 China

7. Faculty of Materials Science and Engineering, Key Laboratory of Advanced Materials of Yunnan Province Kunming University of Science and Technology Kunming 650093 China

Abstract

AbstractPersistent luminescence (PersL) materials exhibit thermal‐favored optical behavior, enabling their unique applications in security night vision signage, in vivo bioimaging, and optical anti‐counterfeiting. Therefore, developing efficient and color‐tunable PersL materials is significantly crucial in promoting advanced practical use. In this study, hexagonal Zr4+‐doped CsCdCl3 perovskite is synthesized via a hydrothermal reaction with a tunable photoluminescent (PL) behavior through heterovalent substitution. Moreover, the incorporation of Zr4+ ions result in an extra blue emission band, originating from the enhanced excitonic recombination in D3d octahedrons. Furthermore, the afterglow performances of the samples are dramatically improved, along with the noticeable temperature‐dependent PersL as well as the thermo‐luminescence with tunable color output. Detailed analysis reveals that the unique temperature‐dependent PersL and thermo‐luminescence color change are attributed to the presence of multiple luminous centers and abundant traps. Overall, this work facilitates the development of optical intelligence platforms and novel thermal distribution probes with the as‐developed halides perovskite for its superior explored PersL characteristic.

Funder

Research Grants Council, University Grants Committee

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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