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Designing a built-in electric field for efficient energy electrocatalysis
X Zhao, M Liu, Y Wang, Y ** innovative water electrolysis system to realize the energy-saving hydrogen
production and prevent the H 2/O 2 mixing is of vital importance for further boosting the …
production and prevent the H 2/O 2 mixing is of vital importance for further boosting the …
Ta3N5/CdS Core–Shell S-scheme Heterojunction Nanofibers for Efficient Photocatalytic Removal of Antibiotic Tetracycline and Cr(VI): Performance and Mechanism …
S Li, M Cai, C Wang, Y Liu - Advanced Fiber Materials, 2023 - Springer
Abstract Ta3N5/CdS core–shell S-scheme heterojunction nanofibers are fabricated by in situ
growing CdS nanodots on Ta3N5 nanofibers via a simple wet-chemical method. These …
growing CdS nanodots on Ta3N5 nanofibers via a simple wet-chemical method. These …
Novel Cd0. 5Zn0. 5S/Bi2MoO6 S-scheme heterojunction for boosting the photodegradation of antibiotic enrofloxacin: Degradation pathway, mechanism and toxicity …
M Cai, Y Liu, C Wang, W Lin, S Li - Separation and Purification Technology, 2023 - Elsevier
The artificial S-scheme photocatalysis system, mimicking natural photosynthesis, has shown
eminent potential for the photocatalytic destruction of pharmaceuticals and personal care …
eminent potential for the photocatalytic destruction of pharmaceuticals and personal care …
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 …
Microwave Phosphine‐Plasma‐Assisted Ultrafast Synthesis of Halogen‐Doped Ru/RuP2 with Surface Intermediate Adsorption Modulation for Efficient Alkaline …
Anionic modification engineering is a crucial approach to develop highly efficient
electrocatalysts for hydrogen evolution reaction. Herein, halogen elements (X= Cl, Br, and I) …
electrocatalysts for hydrogen evolution reaction. Herein, halogen elements (X= Cl, Br, and I) …
Recent advances in hybrid seawater electrolysis for hydrogen production
Seawater electrolysis (SWE) is a promising and potentially cost‐effective approach to
hydrogen production, considering that seawater is vastly abundant and SWE is able to …
hydrogen production, considering that seawater is vastly abundant and SWE is able to …
Surface reconstruction and directed electron transport in NiSe2/MoSe2 Mott-Schottky heterojunction catalysts promote urea-assisted water splitting
X Xu, H Liao, L Huang, S Chen, R Wang, S Wu… - Applied Catalysis B …, 2024 - Elsevier
The construction of cost-effective electrocatalysts with remarkable activity and durability for
the urea oxidation reaction (UOR) is urgently needed to achieve sustainable hydrogen …
the urea oxidation reaction (UOR) is urgently needed to achieve sustainable hydrogen …
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 …
Metal-organic framework-based catalysts for hydrogen production from liquid-phase chemical hydrides
Hydrogen is a clean, sustainable, and efficient energy carrier. However, the safe and
controllable storage and evolution of hydrogen for practical applications remain challenging …
controllable storage and evolution of hydrogen for practical applications remain challenging …