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MXene Analogue: A 2D Nitridene Solid Solution for High-Rate Hydrogen Production.


ABSTRACT: Electrocatalysts for high-rate hydrogen evolution reaction (HER) are crucial to clean fuel production. Nitrogen-rich 2D transition metal nitride, designated "nitridene", has shown promising HER performance because of its unique physical/chemical properties. However, its synthesis is hindered by the sluggish growth kinetics. Here for the first time using a catalytic molten-salt method, we facilely synthesized a V-Mo bimetallic nitridene solid solution, V0.2 Mo0.8 N1.2 , with tunable electrocatalytic property. The molten-salt synthesis reduces the growth barrier of V0.2 Mo0.8 N1.2 and facilitates V dissolution via a monomer assembly, as confirmed by synchrotron spectroscopy and ex situ electron microscopy. Furthermore, by merging computational simulations, we confirm that the V doping leads to an optimized electronic structure for fast protons coupling to produce hydrogen. These findings offer a quantitative engineering strategy for developing analogues of MXenes for clean energy conversions.

SUBMITTER: Jin H 

PROVIDER: S-EPMC9322295 | biostudies-literature | 2022 Jul

REPOSITORIES: biostudies-literature

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MXene Analogue: A 2D Nitridene Solid Solution for High-Rate Hydrogen Production.

Jin Huanyu H   Yu Huimin H   Li Haobo H   Davey Kenneth K   Song Taeseup T   Paik Ungyu U   Qiao Shi-Zhang SZ  

Angewandte Chemie (International ed. in English) 20220503 27


Electrocatalysts for high-rate hydrogen evolution reaction (HER) are crucial to clean fuel production. Nitrogen-rich 2D transition metal nitride, designated "nitridene", has shown promising HER performance because of its unique physical/chemical properties. However, its synthesis is hindered by the sluggish growth kinetics. Here for the first time using a catalytic molten-salt method, we facilely synthesized a V-Mo bimetallic nitridene solid solution, V<sub>0.2</sub> Mo<sub>0.8</sub> N<sub>1.2</  ...[more]

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