Metal-Free Counter Electrodes for DSSCs Based on Nitrogen-Doped Reduced Graphene Oxide Materials

Author:

Duerto Isolda1ORCID,Carrera Clara2,Barrios Daniel3,Benito Ana M.2ORCID,Maser Wolfgang K.2ORCID,Villacampa Belén3,García-Bordejé Enrique2ORCID,Blesa María-Jesús1ORCID

Affiliation:

1. Departamento de Química Orgánica, INMA, Universidad de Zaragoza-CSIC, 50009 Zaragoza, Spain

2. Instituto de Carboquímica, ICB-CSIC, Miguel Luesma Castán 4, 50018 Zaragoza, Spain

3. Departamento de Física de la Materia Condensada, INMA, Universidad de Zaragoza-CSIC, 50009 Zaragoza, Spain

Abstract

The importance of counter electrodes in Dye Sensitized Solar Cells (DSSCs) cannot be neglected as they enable the transfer of electrons across the outer circuit, thereby facilitating the reduction reaction of the I3−/I− redox electrolyte. However, the dissolution and deposition of the usual platinum layer on the counter electrode has resulted in contamination concerns. To address this issue, metal-free counter electrodes made of reduced graphene oxide (rGO) aerogels were developed and their catalytic performance towards I3− reduction was evaluated. The reduced graphene materials were characterized, and the fitting analysis of XPS revealed the presence of various nitrogen species, with the primary peaks attributed to pyridinic and pyrrolic nitrogen. The hydrothermal treatment of graphene oxide (GO) resulted in a higher graphitic character and the intensification of the contacts between graphene nanosheets, which should entail higher electrical conductivity, both in-plane and between rGO sheets. Additionally, the presence of nitrogen-provided active sites promoted the catalytic reduction of the electrolyte. Encouragingly, good charge transfer rates were observed between the counter electrode and the electrolyte in the assembled DSSCs, resulting in good photocurrents and exceptional stability over the course of nearly 1200 h after cell assembly. The results obtained suggest that these GO-based systems are promising candidates for developing metal-free counter electrodes for DSSC, supporting the interest of further study.

Funder

Spanish Ministry of Science and Innovation

Gobierno de Aragón-Fondo Social Europeo

Gobierno de Aragón-Fondo Social Europeo fellowship

PhD studentship Santander-2018 programs

Gobierno de Aragón

Publisher

MDPI AG

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