Advancements and Prospects in Perovskite Solar Cells: From Hybrid to All-Inorganic Materials

Author:

Maziviero Fernando Velcic12,Melo Dulce M. A.123,Medeiros Rodolfo L. B. A.23,Oliveira Ângelo A. S.2,Macedo Heloísa P.23,Braga Renata M.245,Morgado Edisson6

Affiliation:

1. Postgraduate Program in Chemistry, Federal University of Rio Grande do Norte, Natal 59078-970, Brazil

2. Laboratório de Tecnologia Ambiental—LABTAM, Federal University of Rio Grande do Norte, Natal 59078-970, Brazil

3. Postgraduate Program in Materials Science and Engineering, Federal University of Rio Grande do Norte, Natal 59078-970, Brazil

4. Agricultural School of Jundiaí, Federal University of Rio Grande do Norte, Macaíba 59280-000, Brazil

5. Postgraduate Program in Chemical Engineering, Federal University of Rio Grande do Norte, Natal 59078-970, Brazil

6. PETROBRAS R&D Centre (CENPES), Rio de Janeiro 21941-915, Brazil

Abstract

Hybrid perovskites, materials composed of metals and organic substances in their structure, have emerged as potential materials for the new generation of photovoltaic cells due to a unique combination of optical, excitonic and electrical properties. Inspired by sensitization techniques on TiO2 substrates (DSSC), CH3NH3PbBr3 and CH3NH3PbI3 perovskites were studied as a light-absorbing layer as well as an electron–hole pair generator. Photovoltaic cells based on per-ovskites have electron and hole transport layers (ETL and HTL, respectively), separated by an ac-tive layer composed of perovskite itself. Major advances subsequently came in the preparation methods of these devices and the development of different architectures, which resulted in an efficiency exceeding 23% in less than 10 years. Problems with stability are the main barrier to the large-scale production of hybrid perovskites. Partially or fully inorganic perovskites appear promising to circumvent the instability problem, among which the black perovskite phase CsPbI3 (α-CsPbI3) can be highlighted. In more advanced studies, a partial or total substitution of Pb by Ge, Sn, Sb, Bi, Cu or Ti is proposed to mitigate potential toxicity problems and maintain device efficiency.

Funder

FUNPEC/UFRN/PETROBRAS

Processo

National Electric Energy Agency

National Council for Scientific and Technological Development

Publisher

MDPI AG

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