Superwettable and photothermal all-in-one electrocatalyst for boosting water/urea electrolysis.

J Colloid Interface Sci

College of Materials Science and Engineering, Chongqing Jiaotong University, Chongqing 400074, China. Electronic address:

Published: August 2023

Developing multifunctional all-in-one electrocatalysts for energy-saving hydrogen generation remains a challenge. In this study, a simple and feasible thermal phosphorization strategy is explored to rationally construct P-doped MoO-NiMoO heterostructure on nickel foam (NF). The heterointerfaced P-MoO-NiMoO/NF can simultaneously realize the integrated all-in-one functionalities, innovatively introducing superwettable surfaces, photothermal conversion capabilities and electrocatalytic functions. The superwettability gives P-MoO-NiMoO/NF sufficient electrolyte permeation and smooth bubble detachment. The plasmonic MoO with photothermal performance greatly elevates the local surface temperature of in P-MoO-NiMoO/NF, which is conducive to improve the electrocatalytic efficiency. The favorable in-situ surface reconstruction brings abundant active sites for electrocatalytic reactions. As an advanced multifunctional electrocatalyst, the superwettable and photothermal P-MoO-NiMoO/NF exhibits significantly improved performances in oxygen evolution reaction (OER) and urea oxidation reaction (UOR). More importantly, the highly efficient and stable overall water-urea electrolysis assisted by photothermal fields can be simply achieved by exposing P-MoO-NiMoO/NF to near-infrared (NIR) light.

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http://dx.doi.org/10.1016/j.jcis.2023.04.031DOI Listing

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