Articolo in rivista, 2023, ENG, 10.1038/s41893-023-01120-w

Preventing lead leakage in perovskite solar cells with a sustainable titanium dioxide sponge

Valastro, Salvatore; Smecca, Emanuele; Mannino, Giovanni; Bongiorno, Corrado; Fisicaro, Giuseppe; Goedecker, Stefan; Arena, Valentina; Spampinato, Carlo; Deretzis, Ioannis; Dattilo, Sandro; Scamporrino, Andrea; Carroccio, Sabrina; Fazio, Enza; Neri, Fortunato; Bisconti, Francesco; Rizzo, Aurora; Spinella, Corrado; La Magna, Antonino; Alberti, Alessandra

CNR IMM; Univ Basel; Univ Messina; CNR IPCB; CNR NANOTEC

As the market uptake of perovskite solar cells (PSCs) is projected to grow rapidly, this clean energy technology will play an increasingly important role in reducing the global carbon footprint. However, one of the major barriers to its full commercialization is the presence of toxic lead (Pb), which enables the current record in photoconversion efficiency but risks being released into the environment when subjected to water or rain. Here we show that Pb leakage can be prevented by applying a transparent titanium dioxide (TiO2) sponge that allows for an efficient Pb sequestration of 58 ng cm(-2) nm(-1). Already an essential material for PSCs, the additional use of TiO2 through a scalable and solvent-free sputtering process promises extra cost benefits and higher sustainability. Further demonstration of the sponge application with desired thickness on ready-to-use devices, glass and polymeric foils enforces the practical value of the current approach. Our study provides a sustainable solution to one of the environmental and health risks of PSCs and would accelerate their practical applications.

Nature sustainability

Keywords

Perovskite solar cells;, Sustainable development, Titanium dioxide

CNR authors

Dattilo Sandro, Spampinato Carlo Maria Umberto, Arena Valentina, La Magna Antonino, Alberti Alessandra, Mannino Giovanni, Carroccio Sabrina Carola, Bongiorno Corrado, Rizzo Aurora, Deretzis Ioannis, Scamporrino Andrea Antonino, Smecca Emanuele, Fisicaro Giuseppe, Spinella Rosario Corrado, Valastro Salvatore

CNR institutes

ID: 485139

Year: 2023

Type: Articolo in rivista

Creation: 2023-07-27 16:15:11.000

Last update: 2023-09-06 15:24:02.000

External links

OAI-PMH: Dublin Core

OAI-PMH: Mods

OAI-PMH: RDF

DOI: 10.1038/s41893-023-01120-w

External IDs

CNR OAI-PMH: oai:it.cnr:prodotti:485139

DOI: 10.1038/s41893-023-01120-w

ISI Web of Science (WOS): 000986087700001