Graphitic Carbon Nitride Structures on Carbon Cloth Containing Ultra‐ and Nano‐Dispersed NiO for Photoactivated Oxygen Evolution

Author:

Scattolin Enrico1ORCID,Benedet Mattia12ORCID,Rizzi Gian Andrea12ORCID,Gasparotto Alberto12ORCID,Lebedev Oleg I.3ORCID,Barreca Davide2ORCID,Maccato Chiara12ORCID

Affiliation:

1. Department of Chemical Sciences Padova University and INSTM Via Marzolo 1 35131 Padova Italy

2. CNR-ICMATE and INSTM Department of Chemical Sciences Padova University Via Marzolo 1 35131 Padova Italy

3. Laboratoire CRISMAT, UMR 6508 Normandie Université CNRS, ENSICAEN, UNICAEN 6, Boulevard Marechal Juin 14050 Caen, Cedex 4 France

Abstract

AbstractThe development of low‐cost and high‐efficiency oxygen evolution reaction (OER) photoelectrocatalysts is a key requirement for H2 generation via solar‐assisted water splitting. In this study, we report on an amenable fabrication route to carbon cloth‐supported graphitic carbon nitride (gCN) nanoarchitectures, featuring a modular dispersion of NiO as co‐catalyst. The synergistic interaction between gCN and NiO, along with the tailoring of their size and spatial distribution, yield very attractive OER performances and durability in freshwater splitting, of great significance for practical end‐uses. The potential of gCN electrocatalysts containing ultra‐dispersed, i. e. “quasi‐atomic” NiO, exhibiting a higher activity than the ones containing nickel oxide nanoaggregates, is further highlighted by their activity even in real seawater. This work suggests that efficient OER catalysts can be designed through the construction of optimized interfaces between transition metal oxides and carbon nitride, yielding inexpensive and promising noble metal‐free systems for real‐world applications.

Publisher

Wiley

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