[HTML][HTML] Water electrolysis: from textbook knowledge to the latest scientific strategies and industrial developments

M Chatenet, BG Pollet, DR Dekel, F Dionigi… - Chemical society …, 2022 - pubs.rsc.org
Replacing fossil fuels with energy sources and carriers that are sustainable, environmentally
benign, and affordable is amongst the most pressing challenges for future socio-economic …

First-row transition metal-based materials derived from bimetallic metal–organic frameworks as highly efficient electrocatalysts for electrochemical water splitting

S Sanati, A Morsali, H Garcia - Energy & Environmental Science, 2022 - pubs.rsc.org
Electrochemical water splitting is a mature technology for hydrogen generation. Numerous
studies have focused on the development of highly efficient electrocatalysts to produce …

Comprehensive overview of polyoxometalates for electrocatalytic hydrogen evolution reaction

Z Zeb, Y Huang, L Chen, W Zhou, M Liao… - Coordination Chemistry …, 2023 - Elsevier
Electrocatalytic water splitting via hydrogen evolution reaction (HER) from renewable energy
sources is an attractive alternative to produce hydrogen, but it still encounters the limitations …

Bioinspired dynamic antifouling of oil‐water separation membrane by bubble‐mediated shape morphing

H Li, J Zhang, S Gan, X Liu, L Zhu, F ** highly efficient and stable electrocatalysts plays an important role in energy‐
related electrocatalysis fields. Transition‐metal phosphides (TMPs) possess a series of …

Atom do** engineering of transition metal phosphides for hydrogen evolution reactions

H Bai, D Chen, Q Ma, R Qin, H Xu, Y Zhao… - Electrochemical Energy …, 2022 - Springer
Transition metal phosphides (TMPs) have attracted attention in electrocatalytic hydrogen
production because of their multiple active sites, adjustable structures, complex and variable …

Interfacial sp C–O–Mo hybridization originated high-current density hydrogen evolution

Y Yao, Y Zhu, C Pan, C Wang, S Hu… - Journal of the …, 2021 - ACS Publications
High-current density (≥ 1 A cm–2) is a critical factor for large-scale industrial application of
water-splitting electrocatalysts, especially seawater-splitting. However, it still remains a great …