ASnX3 perovskite solar cells (Sn-PSC) have the potential to deliver the most efficient solar cell technology with safe materials. In this review, a comprehensive introduction of the field is given, that is suitable for nonexperts, gradually leading the reader to a narrower and detailed analysis of the most recent and significant advances. A brief description is given of the leading alternatives for lead-free PSC and the reasons for ASnX3 compounds' status as one of the most promising candidates are presented. The last part of the review focuses on the stabilization of ASnX3, which is the most compelling challenge to achieve the highest efficiency PSCs. The most promising approaches toward stable and efficient ASnX3 PSCs are identified and discussed.

Tin Halide Perovskite (ASnX3) Solar Cells: A Comprehensive Guide toward the Highest Power Conversion Efficiency / Nasti, G.; Abate, A.. - In: ADVANCED ENERGY MATERIALS. - ISSN 1614-6832. - 10:13(2020), p. 1902467. [10.1002/aenm.201902467]

Tin Halide Perovskite (ASnX3) Solar Cells: A Comprehensive Guide toward the Highest Power Conversion Efficiency

Abate A.
2020

Abstract

ASnX3 perovskite solar cells (Sn-PSC) have the potential to deliver the most efficient solar cell technology with safe materials. In this review, a comprehensive introduction of the field is given, that is suitable for nonexperts, gradually leading the reader to a narrower and detailed analysis of the most recent and significant advances. A brief description is given of the leading alternatives for lead-free PSC and the reasons for ASnX3 compounds' status as one of the most promising candidates are presented. The last part of the review focuses on the stabilization of ASnX3, which is the most compelling challenge to achieve the highest efficiency PSCs. The most promising approaches toward stable and efficient ASnX3 PSCs are identified and discussed.
2020
Tin Halide Perovskite (ASnX3) Solar Cells: A Comprehensive Guide toward the Highest Power Conversion Efficiency / Nasti, G.; Abate, A.. - In: ADVANCED ENERGY MATERIALS. - ISSN 1614-6832. - 10:13(2020), p. 1902467. [10.1002/aenm.201902467]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/829490
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