Thermally integrated photoelectrochemical devices with perovskite/silicon tandem solar cells: a modular approach for scalable direct water splitting

Author:

Maragno Angela R. A.1ORCID,Morozan Adina2,Fize Jennifer2,Pellat Michel3,Artero Vincent2ORCID,Charton Sophie1ORCID,Matheron Muriel4ORCID

Affiliation:

1. CEA, DES, ISEC, DMRC, Univ. Montpellier, Marcoule, France

2. Univ. Grenoble Alpes, CNRS, CEA, IRIG, Laboratoire de Chimie et Biologie des Métaux, 38000 Grenoble, France

3. Univ. Grenoble Alpes, CEA, LITEN, DTNM, 38000 Grenoble, France

4. Univ. Grenoble Alpes, CEA, LITEN, Campus INES, 73375 Le Bourget du Lac, France

Abstract

Thermally integrated photoelectrochemical cells made of perovskite/silicon tandem solar cells and PEM electrolysers were scaled in modules up to 342 cm2. Direct hydrogen production was demonstrated outdoors with a STH efficiency of 6.3%.

Funder

Agence Nationale de la Recherche

Publisher

Royal Society of Chemistry (RSC)

Reference51 articles.

1. Solar Water Splitting Cells

2. Integrated Photo-Electrochemical Solar Fuel Generators under Concentrated Irradiation

3. Technical and economic feasibility of centralized facilities for solar hydrogen production via photocatalysis and photoelectrochemistry

4. B. D.James , G. N.Baum , J.Perez and K. N.Baum , Technoeconomic Analysis of Photoelectrochemical (PEC) Hydrogen Production, Final Report , 2009 Dec [cited 2024 Feb 29], Report No.: 1218403, available from: http://www.osti.gov/servlets/purl/1218403/

5. A techno-economic perspective on solar-to-hydrogen concepts through 2025

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