Machine‐Learning‐Assisted Discovery of Mechanosynthesized Lead‐Free Metal Halide Perovskites for the Oxidative Photocatalytic Cleavage of Alkenes

Author:

Xiao Yonghao1ORCID,Choudhuri Khokan1ORCID,Thanetchaiyakup Adisak1,Chan Wei Xin1ORCID,Hu Xinwen1ORCID,Sadek Mansour1ORCID,Tam Ying Hern1,Loh Ryan Guanying1,Shaik Mohammed Sharifah Nadhirah Binte1,Lim Kendric Jian Ying1,Ten Ju Zheng1,Garcia Felipe23,Chellappan Vijila45ORCID,Choksi Tej S.67ORCID,Lim Yee‐Fun48ORCID,Soo Han Sen1ORCID

Affiliation:

1. School of Chemistry Chemical Engineering and Biotechnology Nanyang Technological University 21 Nanyang Link Singapore 637371 Singapore

2. Departamento de Química Orgánica e Inorgánica Facultad de Química Universidad de Oviedo Julián Claveria 8 Oviedo Asturias 33006 Spain

3. School of Chemistry Monash University Clayton Victoria 3800 Australia

4. Institute of Materials Research and Engineering (IMRE) Agency for Science Technology and Research (A*STAR) Fusionopolis Way, Innovis #08‐03 Singapore 138634 Singapore

5. Institute for Functional Intelligent Materials National University of Singapore 4 Science Drive 2 Singapore 117544 Singapore

6. School of Chemistry Chemical Engineering and Biotechnology Nanyang Technological University 62 Nanyang Drive Singapore 637459 Singapore

7. Cambridge Centre for Advanced Research and Education in Singapore CREATE Tower 1 Create Way Singapore 138602 Singapore

8. Institute of Sustainability for Chemicals Energy and Environment (ISCE2) Agency of Science Technology and Research (A*STAR) 1 Pesek Road Singapore 627833 Singapore

Abstract

AbstractLead‐free metal halide perovskites can potentially be air‐ and water‐stable photocatalysts for organic synthesis, but there are limited studies on them for this application. Separately, machine learning (ML), a critical subfield of artificial intelligence, has played a pivotal role in identifying correlations and formulating predictions based on extensive datasets. Herein, an iterative workflow by incorporating high‐throughput experimental data with ML to discover new lead‐free metal halide perovskite photocatalysts for the aerobic oxidation of styrene is described. Through six rounds of ML optimization guided by SHapley Additive exPlanations (SHAP) analysis, BA2CsAg0.95Na0.05BiBr7 as a photocatalyst that afforded an 80% yield of benzoic acid under the standard conditions is identified, which is a 13‐fold improvement compared to the 6% with when using Cs2AgBiBr6 as the initial photocatalyst benchmark that is started. BA2CsAg0.95Na0.05BiBr7 can tolerate various functional groups with 22 styrene derivatives, highlighting the generality of the photocatalytic properties demonstrated. Radical scavenging studies and density functional theory calculations revealed that the formation of the reactive oxygen species superoxide and singlet oxygen in the presence of BA2CsAg0.95Na0.05BiBr7 are critical for photocatalysis.

Funder

Agency for Science, Technology and Research

National Research Foundation

Agencia Estatal de Investigación

Fundación para el Fomento en Asturias de la Investigación Científica Aplicada y la Tecnología

Publisher

Wiley

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