Progress in hydrogen production coupled with electrochemical oxidation of small molecules

T Wang, X Cao, L Jiao - Angewandte Chemie, 2022 - Wiley Online Library
The electrochemical oxidation of small molecules to generate value‐added products has
gained enormous interest in recent years because of the advantages of benign operation …

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 …

Water electrolysis for hydrogen production: from hybrid systems to self-powered/catalyzed devices

JT Ren, L Chen, HY Wang, WW Tian… - Energy & Environmental …, 2024 - pubs.rsc.org
The electrocatalytic splitting of water holds great promise as a sustainable and
environmentally friendly technology for hydrogen production. However, the sluggish kinetics …

Lattice Strain Engineering of Ni2P Enables Efficient Catalytic Hydrazine Oxidation‐Assisted Hydrogen Production

C Feng, M Lv, J Shao, H Wu, W Zhou, S Qi… - Advanced …, 2023 - Wiley Online Library
Hydrazine‐assisted water electrolysis provides new opportunities to enable energy‐saving
hydrogen production while solving the issue of hydrazine pollution. Here, the synthesis of …

Energy-saving hydrogen production by chlorine-free hybrid seawater splitting coupling hydrazine degradation

F Sun, J Qin, Z Wang, M Yu, X Wu, X Sun… - Nature communications, 2021 - nature.com
Seawater electrolysis represents a potential solution to grid-scale production of carbon-
neutral hydrogen energy without reliance on freshwater. However, it is challenged by high …

Circumventing challenges: design of anodic electrocatalysts for hybrid water electrolysis systems

HY Wang, ML Sun, JT Ren… - Advanced Energy …, 2023 - Wiley Online Library
Water electrolysis, driven by renewable energy resources, is a promising energy conversion
technology that has gained intensive interest in recent years. However, conventional water …

Schottky heterojunction nanosheet array achieving high‐current‐density oxygen evolution for industrial water splitting electrolyzers

Q Wen, K Yang, D Huang, G Cheng, X Ai… - Advanced Energy …, 2021 - Wiley Online Library
Versatile catalyst systems with large current density under industrial conditions are pivotal to
give impetus to hydrogen energy from fundamental to practical applications. Herein, a …

Earth‐abundant metal‐based electrocatalysts promoted anodic reaction in hybrid water electrolysis for efficient hydrogen production: recent progress and …

C Deng, CY Toe, X Li, J Tan, H Yang… - Advanced Energy …, 2022 - Wiley Online Library
Exploring advanced technologies to efficiently produce green hydrogen energy is imperative
to alleviate the energy crisis and environmental pollution. Conventional overall water …

Electrochemical hydrogen production coupled with oxygen evolution, organic synthesis, and waste reforming

J Du, D **ang, K Zhou, L Wang, J Yu, H **a, L Zhao… - Nano Energy, 2022 - Elsevier
H 2 gas is considered to be an ideal green energy carrier that can replace fossil fuels to
ameliorate the rapidly increasing global issues of energy crisis and environmental pollution …

Stable and highly efficient hydrogen evolution from seawater enabled by an unsaturated nickel surface nitride

H **, X Wang, C Tang, A Vasileff, L Li… - Advanced …, 2021 - Wiley Online Library
Electrocatalytic production of hydrogen from seawater provides a route to low‐cost and
clean energy conversion. However, the hydrogen evolution reaction (HER) using seawater …