Exploring the Feasibility of Copper Incorporation in Halide Perovskites: Impact on CO2 Photoreduction Performance

Author:

Tailor Naveen Kumar12,Singh Shreya3,Singh Nikhil4,Nayak Pabitra Kumar4,Saini Saurabh K.56,Das Srimanta12,Venkanna Guguloth3,Senanayak Satyaprasad P7,Kumar Mahesh68,Ghosh Dibyajyoti49,Tripathi Komal10,Pant Kamal Kishore231011,Satapathi Soumitra12ORCID

Affiliation:

1. Department of Physics Indian Institute of Technology Roorkee Roorkee 247667 India

2. Center for Sustainable Energy Indian Institute of Technology Roorkee Roorkee 247667 India

3. Catalytic Reaction Engineering Lab Department of Chemical Engineering Indian Institute of Technology Delhi New Delhi 110016 India

4. Department of Chemistry Indian Institute of Technology Delhi Hauz Khas New Delhi 110016 India

5. CSIR‐National Physical Laboratory Dr. K.S. Krishnan Marg New Delhi 110012 India

6. Academy of Scientific and Innovative Research (AcSIR) Ghaziabad 201002 India

7. School of Physical Sciences National Institute of Science Education and Research Bhubaneswar Odisha 752050 India

8. Innovation Management Directorate Anusandhan Bhawan New Delhi 110001 India

9. Department of Materials Science and Engineering Indian Institute of Technology Delhi Hauz Khas New Delhi 110016 India

10. Department of Chemical Engineering Indian Institute of Technology Roorkee Roorkee 247667 India

11. University of Saskatchewan Saskatoon SK S7N 5A2 Canada

Abstract

AbstractDouble perovskite have attracted substantial attention as prospective materials for applications in optoelectronics and photocatalysis. Significant efforts are devoted to modulating the properties of double perovskites to improve their performance. One promising approach involves substituting silver (Ag) with copper (Cu), which offers favorable electronic characteristics. Despite promising theoretical predictions, the experimental synthesis of copper‐based double perovskites has presented notable challenges. Here, the challenges of Cu incorporation in double perovskites and the subsequent – impact of Cu on the photocatalytic activity of halide perovskites toward CO2 reduction are explored. Combining detailed computational thermodynamic studies, it is found that Cu does not form the traditional double perovskite structure that is Cs2CuBiCl6; it stays as an interstitial dopant in its pristine Cs3Bi2Cl9 structure. The Cu‐Cs3Bi2Cl9 are found to exhibit enhanced CO2 photoreduction activity than the pristine Cs3Bi2Cl9. Further, transient absorption results show that Cu dopants enhance the carrier generation because of introduced sub‐bandgap states, and it is found that carrier decay lifetime is elevated in Cu‐Cs3Bi2Cl9, which can enhance the participation of carriers in CO2 photoreduction. The study explores the challenges and opportunities of copper doping in halide perovskites, offering the potential for developing efficient CO2 reduction photocatalysts.

Funder

Department of Atomic Energy, Government of India

Indian Institute of Technology Guwahati

Publisher

Wiley

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