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Electronic Regulation of Platinum Species on Metal Nitrides Realizes Superior Mass Activity for Hydrogen Production

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Specialty Chemistry
Date 2022 May 7
PMID 35525144
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Abstract

Developing high-active electrocatalyst to improve the efficiency of hydrogen evolution reaction (HER) is critical to achieve clean hydrogen. However, the low mass activity and high cost of this technology still limits its wide commercial application. Herein, a new kind of hybrid material is designed by introducing trace Pt species onto a mixed metal nitride matrixs (denoted as NiWN), presenting as an excellent electrocatalyst for HER. The prepared Pt-NiWN hybrid possesses abundant heterointerfaces, high conductivity and strong electron interactions, facilitating the reaction kinetics for hydrogen production. As a result, the Pt-NiWN only needs a small overpotential of 61 mV to reach the geometric current density of 100 mA cm in alkaline electrolyte. Notably, this kind of catalyst delivers a superior mass activity of 32.8 A mg at -0.1 V and high durability, exhibiting the promising prospects for industrial application. This work offers a novel design strategy for high-efficient hybrid materials for scaled hydrogen generation.

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PMID: 36014456 PMC: 9416345. DOI: 10.3390/molecules27165216.