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Next-generation applications for integrated perovskite solar cells

Abdulaziz S. R. BatiCentre for Organic Photonics & Electronics, School of Chemistry and Molecular Biosciences, The University of Queensland, St Lucia, Brisbane, QLD, 4072, AustraliaYu Lin ZhongQueensland Micro- and Nanotechnology Centre, School of Environment and Science, Griffith University Nathan, Brisbane, QLD, 4111, AustraliaPaul L. BurnCentre for Organic Photonics & Electronics, School of Chemistry and Molecular Biosciences, The University of Queensland, St Lucia, Brisbane, QLD, 4072, AustraliaMohammad Khaja NazeeruddinGroup for Molecular Engineering of Functional Materials, Institute of Chemical Sciences and Engineering, École Polytechnique Fédérale de Lausanne (EPFL), CH-1951 Sion, SwitzerlandPaul E. ShawCentre for Organic Photonics & Electronics, School of Chemistry and Molecular Biosciences, The University of Queensland, St Lucia, Brisbane, QLD, 4072, AustraliaMunkhbayar BatmunkhQueensland Micro- and Nanotechnology Centre, School of Environment and Science, Griffith University Nathan, Brisbane, QLD, 4111, Australia
2023en
ABI

Annotatsiya

Abstract Organic/inorganic metal halide perovskites attract substantial attention as key materials for next-generation photovoltaic technologies due to their potential for low cost, high performance, and solution processability. The unique properties of perovskites and the rapid advances that have been made in solar cell performance have facilitated their integration into a broad range of practical applications, including tandem solar cells, building-integrated photovoltaics, space applications, integration with batteries and supercapacitors for energy storage systems, and photovoltaic-driven catalysis. In this Review, we outline notable achievements that have been made in these photovoltaic-integrated technologies. Outstanding challenges and future perspectives for the development of these fields and potential next-generation applications are discussed.

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