Data‐Driven Controlled Synthesis of Oriented Quasi‐Spherical CsPbBr3 Perovskite Materials

Author:

Liu Shaohui123,Chen Zijian134,Liu Yingming5,Wu Lingjun1,Wang Boyuan3,Wang Zixuan13,Wu Bobin123,Zhang Xinyu13,Zhang Jie12,Chen Mengyun6,Huang Hao7ORCID,Ye Junzhi8,Chu Paul K.9,Yu Xue‐Feng7,Polavarapu Lakshminarayana10,Hoye Robert L. Z.8,Gao Feng6,Zhao Haitao1ORCID

Affiliation:

1. Center for Intelligent and Biomimetic Systems Shenzhen Institute of Advanced Technology Chinese Academy of Sciences Shenzhen 518055 Guangdong PR China

2. Nano Science and Technology Institute University of Science and Technology of China Suzhou 215000 PR China

3. Wenzhou Institute of Technology Digital Intelligent Manufacturing Research Center Wenzhou 325000 PR China

4. Department of Chemical and Environmental Engineering the University of Nottingham Ningbo China Ningbo 315100 PR China

5. Centre for Photonics Information and Energy Materials Shenzhen Institute of Advanced Technology Chinese Academy of Sciences Shenzhen 518055 Guangdong PR China

6. Department of Physics Chemistry and Biology (IFM) Linköping University Linköping SE-58183 Sweden

7. Materials Interfaces Center Shenzhen Institute of Advanced Technology Chinese Academy of Sciences Shenzhen 518055 Guangdong PR China

8. Inorganic Chemistry Laboratory University of Oxford South Parks Road Oxford OX1 3QR United Kingdom

9. Department of Physics Department of Materials Science and Engineering and Department of Biomedical Engineering City University of Hong Kong Tat Chee Avenue Kowloon Hong Kong China

10. CINBIO Materials Chemistry and Physics Group University of Vigo, Campus Universitario Marcosende Vigo 36310 Spain

Abstract

AbstractControlled synthesis of lead‐halide perovskite crystals is challenging yet attractive because of the pivotal role played by the crystal structure and growth conditions in regulating their properties. This study introduces data‐driven strategies for the controlled synthesis of oriented quasi‐spherical CsPbBr3, alongside an investigation into the synthesis mechanism. High‐throughput rapid characterization of absorption spectra and color under ultraviolet illumination was conducted using 23 possible ligands for the synthesis of CsPbBr3 crystals. The links between the absorption spectra slope (difference in the absorbance at 400 nm and 450 nm divided by a wavelength interval of 50 nm) and crystal size were determined through statistical analysis of more than 100 related publications. Big data analysis and machine learning were employed to investigate a total of 688 absorption spectra and 652 color values, revealing correlations between synthesis parameters and properties. Ex situ characterization confirmed successful synthesis of oriented quasi‐spherical CsPbBr3 perovskites using polyvinylpyrrolidone and Acacia. Density functional theory calculations highlighted strong adsorption of Acacia on the (110) facet of CsPbBr3. Optical properties of the oriented quasi‐spherical perovskites prepared with these data‐driven strategies were significantly improved. This study demonstrates that data‐driven controlled synthesis facilitates morphology‐controlled perovskites with excellent optical properties.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Guangdong Province

Publisher

Wiley

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