Clean and affordable hydrogen fuel from alkaline water splitting: past, recent progress, and future prospects

ZY Yu, Y Duan, XY Feng, X Yu, MR Gao… - Advanced …, 2021 - Wiley Online Library
Hydrogen economy has emerged as a very promising alternative to the current hydrocarbon
economy, which involves the process of harvesting renewable energy to split water into …

Self‐supported electrocatalysts for practical water electrolysis

H Yang, M Driess, PW Menezes - Advanced energy materials, 2021 - Wiley Online Library
Over the years, significant advances have been made to boost the efficiency of water
splitting by carefully designing economic electrocatalysts with augmented conductivity, more …

Alleviating the Work Function of Vein‐Like CoXP by Cr Do** for Enhanced Seawater Electrolysis

Y Song, M Sun, S Zhang, X Zhang, P Yi… - Advanced Functional …, 2023 - Wiley Online Library
For mass production of hydrogen fuel by electrochemical water splitting, seawater is
preferred because of its abundant reserves on Earth. However, the current seawater …

Cation‐induced deep reconstruction and self‐optimization of NiFe phosphide precatalysts for hydrogen evolution and overall water splitting

J Nie, J Shi, T Huang, MY ** high‐performance and cost‐effective bifunctional electrocatalysts for large‐
scale water electrolysis is desirable but remains a significant challenge. Most existing nano …

Nanostructured metal phosphide based catalysts for electrochemical water splitting: a review

PM Bodhankar, PB Sarawade, P Kumar, A Vinu… - Small, 2022 - Wiley Online Library
Amongst various futuristic renewable energy sources, hydrogen fuel is deemed to be clean
and sustainable. Electrochemical water splitting (EWS) is an advanced technology to …

Nanostructured metal phosphides: from controllable synthesis to sustainable catalysis

SH Li, MY Qi, ZR Tang, YJ Xu - Chemical Society Reviews, 2021 - pubs.rsc.org
Metal phosphides (MPs) with unique and desirable physicochemical properties provide
promising potential in practical applications, such as the catalysis, gas/humidity sensor …

Engineering active iron sites on nanoporous bimetal phosphide/nitride heterostructure array enabling robust overall water splitting

X Zhou, Y Mo, F Yu, L Liao, X Yong… - Advanced Functional …, 2023 - Wiley Online Library
Alkaline water electrolysis is a commercially viable technology for green H2 production
using renewable electricity from intermittent solar or wind energy, but very few non‐noble …

Highly efficient and stable saline water electrolysis enabled by self‐supported nickel‐iron phosphosulfide nanotubes with heterointerfaces and under‐coordinated …

Z Yu, Y Li, V Martin‐Diaconescu… - Advanced Functional …, 2022 - Wiley Online Library
Direct seawater electrolysis is proposed as a potential low‐cost approach to green hydrogen
production, taking advantage of the vastly available seawater and large‐scale offshore …