Oxygen evolution reaction in alkaline environment: material challenges and solutions

X **e, L Du, L Yan, S Park, Y Qiu… - Advanced Functional …, 2022 - Wiley Online Library
The oxygen evolution reaction (OER) generally exists in electrochemistry‐enabled
applications that are coupled with cathodic reactions like hydrogen evolution, carbon …

Non-precious-metal catalysts for alkaline water electrolysis: operando characterizations, theoretical calculations, and recent advances

J Wang, Y Gao, H Kong, J Kim, S Choi… - Chemical Society …, 2020 - pubs.rsc.org
Recent years have witnessed an upsurge in the development of non-precious catalysts
(NPCs) for alkaline water electrolysis (AWE), especially with the strides made in …

Redirecting dynamic surface restructuring of a layered transition metal oxide catalyst for superior water oxidation

J Wang, SJ Kim, J Liu, Y Gao, S Choi, J Han, H Shin… - Nature Catalysis, 2021 - nature.com
Rationally manipulating the in situ formed catalytically active surface of catalysts remains a
tremendous challenge for a highly efficient water electrolysis. Here we present a cationic …

Recycling spent LiNi1-xyMnxCoyO2 cathodes to bifunctional NiMnCo catalysts for zinc-air batteries

M Jiao, Q Zhang, C Ye, Z Liu, X Zhong… - Proceedings of the …, 2022 - National Acad Sciences
The skyrocketing production of lithium-ion batteries (LIBs) for electric vehicles portends that
tremendous numbers of used LIBs will be generated. However, the recycling of used LIBs is …

Designing high‐valence metal sites for electrochemical water splitting

H Sun, X Xu, Y Song, W Zhou… - Advanced Functional …, 2021 - Wiley Online Library
Electrochemical water splitting is a critical energy conversion process for producing clean
and sustainable hydrogen; this process relies on low‐cost, highly active, and durable …

Lattice‐Strain Engineering for Heterogenous Electrocatalytic Oxygen Evolution Reaction

Z Hou, C Cui, Y Li, Y Gao, D Zhu, Y Gu… - Advanced …, 2023 - Wiley Online Library
The energy efficiency of metal–air batteries and water‐splitting techniques is severely
constrained by multiple electronic transfers in the heterogenous oxygen evolution reaction …

Anticatalytic strategies to suppress water electrolysis in aqueous batteries

Y Sui, X Ji - Chemical Reviews, 2021 - ACS Publications
Aqueous electrolytes are the leading candidate to meet the surging demand for safe and low-
cost storage batteries. Aqueous electrolytes facilitate more sustainable battery technologies …

Enhancing electrocatalytic water splitting by strain engineering

B You, MT Tang, C Tsai, F Abild‐Pedersen… - Advanced …, 2019 - Wiley Online Library
Electrochemical water splitting driven by sustainable energy such as solar, wind, and tide is
attracting ever‐increasing attention for sustainable production of clean hydrogen fuel from …

Identifying the geometric catalytic active sites of crystalline cobalt oxyhydroxides for oxygen evolution reaction

S Wang, Q Jiang, S Ju, CS Hsu, HM Chen… - Nature …, 2022 - nature.com
Unraveling the precise location and nature of active sites is of paramount significance for the
understanding of the catalytic mechanism and the rational design of efficient …

Denary oxide nanoparticles as highly stable catalysts for methane combustion

T Li, Y Yao, Z Huang, P **e, Z Liu, M Yang, J Gao… - Nature Catalysis, 2021 - nature.com
Oxide nanoparticles with elemental and structural diversity are widely studied for catalysis
and energy applications. While compositional control holds great promise for materials …