A review of transition metal boride, carbide, pnictide, and chalcogenide water oxidation electrocatalysts

K Kawashima, RA Márquez, LA Smith… - Chemical …, 2023 - ACS Publications
Transition metal borides, carbides, pnictides, and chalcogenides (X-ides) have emerged as
a class of materials for the oxygen evolution reaction (OER). Because of their high earth …

Structural transformation of heterogeneous materials for electrocatalytic oxygen evolution reaction

H Ding, H Liu, W Chu, C Wu, Y ** regulation in transition metal compounds for electrocatalysis
A Zhang, Y Liang, H Zhang, Z Geng… - Chemical Society Reviews, 2021 - pubs.rsc.org
In electrocatalysis, do** regulation has been considered as an effective method to
modulate the active sites of catalysts, providing a powerful means for creating a large variety …

Lattice Oxygen Activation through Deep Oxidation of Co4N by Jahn–Teller–Active Dopants for Improved Electrocatalytic Oxygen Evolution

J Han, H Wang, Y Wang, H Zhang, J Li… - Angewandte Chemie …, 2024 - Wiley Online Library
Triggering the lattice oxygen oxidation mechanism is crucial for improving oxygen evolution
reaction (OER) performance, because it could bypass the scaling relation limitation …

Spin states of metal centers in electrocatalysis

Y Zhang, Q Wu, JZY Seow, Y Jia, X Ren… - Chemical Society …, 2024 - pubs.rsc.org
Understanding the electronic structure of active sites is crucial in efficient catalyst design.
The spin state, spin configurations of d-electrons, has been frequently discussed recently …

Interfacial engineering of the NiSe2/FeSe2 pp heterojunction for promoting oxygen evolution reaction and electrocatalytic urea oxidation

S Ni, H Qu, Z Xu, X Zhu, H ** for boosting water splitting electrocatalysis
L Tian, Z Li, X Xu, C Zhang - Journal of Materials Chemistry A, 2021 - pubs.rsc.org
Electrochemical water splitting has a promising future in producing high-density and green
hydrogen, however, the sluggish H2O dissociation process, due to the low H2O adsorption …

Engineering high‐spin state cobalt cations in spinel zinc cobalt oxide for spin channel propagation and active site enhancement in water oxidation

Y Sun, X Ren, S Sun, Z Liu, S **, ZJ Xu - Angewandte Chemie, 2021 - Wiley Online Library
Spinel zinc cobalt oxide (ZnCo2O4) is not considered as a superior catalyst for the
electrochemical oxygen evolution reaction (OER), which is the bottleneck reaction in water …