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A comprehensive review of the promising clean energy carrier: Hydrogen production, transportation, storage, and utilization (HPTSU) technologies
Hydrogen has been recognized as a promising alternative energy carrier due to its high
energy density, low emissions, and potential to decarbonize various sectors. This review …
energy density, low emissions, and potential to decarbonize various sectors. This review …
Advanced electrocatalysts with unusual active sites for electrochemical water splitting
Electrochemical water splitting represents a promising technology for green hydrogen
production. To design advanced electrocatalysts, it is crucial to identify their active sites and …
production. To design advanced electrocatalysts, it is crucial to identify their active sites and …
FeNi alloys incorporated N-doped carbon nanotubes as efficient bifunctional electrocatalyst with phase-dependent activity for oxygen and hydrogen evolution …
Y Zhang, B Chen, Y Qiao, Y Duan, X Qi, S He… - Journal of Materials …, 2024 - Elsevier
Electrochemical oxygen evolution reaction (OER) and hydrogen evolution reaction (HER)
are two important half-cell reactions for overall water splitting. The rational design and …
are two important half-cell reactions for overall water splitting. The rational design and …
Grain boundary engineering: An emerging pathway toward efficient electrocatalysis
Electrochemical transformation processes involving carbon, hydrogen, oxygen, nitrogen,
and small‐molecule chemistries represent a promising means to store renewable energy …
and small‐molecule chemistries represent a promising means to store renewable energy …
Lattice oxygen redox mechanisms in the alkaline oxygen evolution reaction
X Ren, Y Zhai, N Yang, B Wang… - Advanced Functional …, 2024 - Wiley Online Library
Understanding of fundamental mechanism and kinetics of the oxygen evolution reaction
(OER) is pivotal for designing efficient OER electrocatalysts owing to its key role in …
(OER) is pivotal for designing efficient OER electrocatalysts owing to its key role in …
Highly crystalline iridium–nickel nanocages with subnanopores for acidic bifunctional water splitting electrolysis
Develo** efficient bifunctional materials is highly desirable for overall proton membrane
water splitting. However, the design of iridium materials with high overall acidic water …
water splitting. However, the design of iridium materials with high overall acidic water …
Electrochemical oxidation of small molecules for energy‐saving hydrogen production
Electrochemical water splitting is a promising technique for the production of high‐purity
hydrogen. Substituting the slow anodic oxygen evolution reaction with an oxidation reaction …
hydrogen. Substituting the slow anodic oxygen evolution reaction with an oxidation reaction …
Hydrogen energy systems: Technologies, trends, and future prospects
This review critically examines hydrogen energy systems, highlighting their capacity to
transform the global energy framework and mitigate climate change. Hydrogen showcases a …
transform the global energy framework and mitigate climate change. Hydrogen showcases a …
Recent advances in metal/covalent organic frameworks based materials: Their synthesis, structure design and potential applications for hydrogen production
In recent years, both-organic frameworks (MOFs) based and covalent-organic frameworks
(COFs) based materials have been extensively utilized for catalysis because of their specific …
(COFs) based materials have been extensively utilized for catalysis because of their specific …
Understanding the bifunctional catalytic ability of electrocatalysts for oxygen evolution reaction and urea oxidation Reaction: Recent advances and perspectives
Significant progress has been made in the discovery of bifunctional electrocatalysts for
energy storage and conversion systems. Particularly, high-performance bifunctional …
energy storage and conversion systems. Particularly, high-performance bifunctional …