Turnitin
降AI改写
早检测系统
早降重系统
Turnitin-UK版
万方检测-期刊版
维普编辑部版
Grammarly检测
Paperpass检测
checkpass检测
PaperYY检测
Surface reconstruction of water splitting electrocatalysts
Y Zeng, M Zhao, Z Huang, W Zhu… - Advanced Energy …, 2022 - Wiley Online Library
Water electrolysis is regarded as an efficient and green method to produce hydrogen gas, a
clean energy carrier that holds the key to solving global energy problems. So far, the …
clean energy carrier that holds the key to solving global energy problems. So far, the …
Surface design strategy of catalysts for water electrolysis
B Zhou, R Gao, JJ Zou, H Yang - Small, 2022 - Wiley Online Library
Hydrogen, a new energy carrier that can replace traditional fossil fuels, is seen as one of the
most promising clean energy sources. The use of renewable electricity to drive hydrogen …
most promising clean energy sources. The use of renewable electricity to drive hydrogen …
Highly active and stable OER electrocatalysts derived from Sr2MIrO6 for proton exchange membrane water electrolyzers
Proton exchange membrane water electrolysis is a promising technology to produce green
hydrogen from renewables, as it can efficiently achieve high current densities. Lowering …
hydrogen from renewables, as it can efficiently achieve high current densities. Lowering …
[PDF][PDF] Status and perspectives of key materials for PEM electrolyzer
K Zhang, X Liang, L Wang, K Sun… - Nano Res …, 2022 - pdfs.semanticscholar.org
Proton exchange membrane water electrolyzer (PEMWE) represents a promising
technology for the sustainable production of hydrogen, which is capable of efficiently …
technology for the sustainable production of hydrogen, which is capable of efficiently …
PEM water electrolysis for hydrogen production: fundamentals, advances, and prospects
T Wang, X Cao, L Jiao - Carbon Neutrality, 2022 - Springer
Hydrogen, as a clean energy carrier, is of great potential to be an alternative fuel in the
future. Proton exchange membrane (PEM) water electrolysis is hailed as the most desired …
future. Proton exchange membrane (PEM) water electrolysis is hailed as the most desired …
Confined Ir single sites with triggered lattice oxygen redox: Toward boosted and sustained water oxidation catalysis
Z Shi, Y Wang, J Li, X Wang, Y Wang, Y Li, W Xu… - Joule, 2021 - cell.com
Efficient electrocatalysts for oxygen evolution reaction (OER) in acid are critical to the
development of clean energy conversion schemes. Lattice-oxygen-mediated mechanism …
development of clean energy conversion schemes. Lattice-oxygen-mediated mechanism …
Manganese-based oxide electrocatalysts for the oxygen evolution reaction: a review
P Wang, S Zhang, Z Wang, Y Mo, X Luo… - Journal of Materials …, 2023 - pubs.rsc.org
The oxygen evolution reaction (OER), as an essential process in water decomposition and
air batteries, has received increasing attention in the context of clean energy production and …
air batteries, has received increasing attention in the context of clean energy production and …
Transition metal-based catalysts for electrochemical water splitting at high current density: current status and perspectives
As a clean energy carrier, hydrogen has priority in decarbonization to build sustainable and
carbon-neutral economies due to its high energy density and no pollutant emission upon …
carbon-neutral economies due to its high energy density and no pollutant emission upon …
Acidic oxygen evolution reaction: Mechanism, catalyst classification, and enhancement strategies
As the most desirable hydrogen production device, the highly efficient acidic proton
exchange membrane water electrolyzers (PEMWE) are severely limited by the sluggish …
exchange membrane water electrolyzers (PEMWE) are severely limited by the sluggish …
Anode engineering for proton exchange membrane water electrolyzers
Sustainable hydrogen (H2) production via water electrolysis is one of the most critical
pathways to decarbonize the chemical industry. Among various electrolyzer technologies …
pathways to decarbonize the chemical industry. Among various electrolyzer technologies …