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FeS coupled with VS heterogeneous interface engineering driven by FeV bimetallic MOFs: An efficient all-pH and durable hydrogen evolution. | LitMetric

FeS coupled with VS heterogeneous interface engineering driven by FeV bimetallic MOFs: An efficient all-pH and durable hydrogen evolution.

J Colloid Interface Sci

School of Chemical and Environmental Engineering, Shanghai Institute of Technology, Haiquan Road 100, 201418 Shanghai, PR China. Electronic address:

Published: November 2024

Rational design and preparation of a multiphase electrocatalyst for hydrogen evolution reaction (HER) has become a hot research topic, while applicable and pH versatility of vanadium tetrasulfide (VS) and heptairon octasulfide (FeS) composites have rarely been reported. Here, the facile topological sulfide self-template sacrifice method using FeV bimetallic MOFs is designed to obtain FeS coupled with VS heterostructures, enhancing the electron precipitation in the catalysts and attracts electrons to migrate. According to DFT simulations, the electronic coupling at the atomic orbital level and the modulation of interfacial electrons among various interfaces play a crucial role in enhancing the intermediate state process of the hydrogen evolution reaction (HER) across the entire pH range, promoting the optimal d-band centroid value (ε). Reassuringly, the prepared 3D FeS/VS electrodes possessed excellent performances of η = 53 mV, η = 135 mV and η = 38 mV in a conventional three-electrode configuration in a 1 M KOH, 1 M NaSO, and 0.5 M HSO, and the stabilized currents can all be maintained for 48 h. This innovative design of in situ heterostructured materials constructed from dual transition metal sulfides provides inspiring ideas for the preparation of all-pH catalysts.

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Source
http://dx.doi.org/10.1016/j.jcis.2024.06.220DOI Listing

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