Life cycle assessment of low-dimensional materials for perovskite photovoltaic cells

Author:

Ravilla Achyuth1ORCID,Perini Carlo A. R.2ORCID,Correa-Baena Juan-Pablo2ORCID,Ho-Baillie Anita W. Y.3ORCID,Celik Ilke1ORCID

Affiliation:

1. D, epartment of Civil and Environmental Engineering, Portland State University, Portland, 97201, OR, USA

2. School of Material Science and Engineering, Georgia Institute of Technology, Atlanta, 30332, GA, USA

3. School of Physics and University of Sydney Nano Institute, The University of Sydney, Sydney, NSW 2006, Australia

Abstract

Perovskite solar cells integrated with lower dimensional materials can outperform the environmental performance of conventional solar photovoltaic technologies such as crystalline silicon, CIGS, and CdTe with shorter lifetimes.

Funder

National Science Foundation

Publisher

Royal Society of Chemistry (RSC)

Reference78 articles.

1. International Energy Agency , Snapshot of Global PV Markets 2023. Task 1 Strategic PV Analysis and Outreach. IEA PVPS , Paris, France , 2023 , vol. I

2. International Energy Agency , Tracking SDG7: The Energy Progress Report 2023 , Paris, France , 2023

3. Statista, Global solar energy share in electricity mix 2022, https://www.statista.com/statistics/1302055/global-solar-energy-share-electricity-mix/ , (accessed 30 October 2023)

4. DNV, Energy Transition Outlook – 2023, https://www.dnv.com/energy-transition-outlook/index.html , (accessed 1 November 2023)

5. Photovoltaic Cell Generations and Current Research Directions for Their Development

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