Results 281 to 290 of about 11,300,632 (342)
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Electrochemistry and Electrocatalytic Activity of Cobaloxime Complexes
ChemistrySelect, 2022Abstract Development of clean and renewable energy sources has emerged as one of the major interests due to the environmental issues caused by the fossil fuels . Presently a huge amount of interest has been devoted in developing the cost effective alternative energy sources ...
Subramanian Sowmya, Vijendran Vijaikanth
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Polyoxometalate-stabilized Pt nanoparticles and their electrocatalytic activities
Physical Chemistry Chemical Physics, 2011The synthesis of long-term stable polyoxometalate (POM)-stabilized Pt nanoparticles (NPs) is described here. By means of controlled bulk electrolysis, the reduced POM anions, SiW(12)O(40)(4-) (or SiW(12)) and H(2)W(12)O(40)(6-) (or H(2)W(12)), respectively, served the dual role of reductant and protecting/stabilizing ligand for the Pt NPs. Transmission
Thomas, Hsu-Yao +3 more
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, 2020
Electrocatalytic activities of electrodes for water splitting generally are assessed in terms of current density normalisation on the basis of geometric area.
Hangjuan Ren +3 more
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Electrocatalytic activities of electrodes for water splitting generally are assessed in terms of current density normalisation on the basis of geometric area.
Hangjuan Ren +3 more
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Green Chemistry, 2020
The activity of CoO for the electrocatalytic oxidation of 5-hydroxymethylfurfural to 2,5-furandicarboxylic acid could be significantly enhanced by introducing oxygen vacancies via Se doping.
Xin Huang +7 more
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The activity of CoO for the electrocatalytic oxidation of 5-hydroxymethylfurfural to 2,5-furandicarboxylic acid could be significantly enhanced by introducing oxygen vacancies via Se doping.
Xin Huang +7 more
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Electrocatalytic Activity of Nitrogen-Doped Carbon Nanotube Cups
Journal of the American Chemical Society, 2009The electrochemical activity of stacked nitrogen-doped carbon nanotube cups (NCNCs) has been explored in comparison to commercial Pt-decorated carbon nanotubes. The nanocup catalyst has demonstrated comparable performance to that of Pt catalyst in oxygen reduction reaction.
Yifan, Tang +3 more
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Energy & Environmental Science, 2019
The effective intramolecular electronic coupling between the Fe and Co atoms via P/O bridges greatly enhances the electrocatalytic activity of Fe–Co (oxy)phosphide nanoboxes.
Huabin Zhang +4 more
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The effective intramolecular electronic coupling between the Fe and Co atoms via P/O bridges greatly enhances the electrocatalytic activity of Fe–Co (oxy)phosphide nanoboxes.
Huabin Zhang +4 more
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, 2020
Researchers have identified that the interactions between metals and their supports have significant impacts on the electrocatalytic activity and durability. However, their interactions have not been well studied.
Subramaniam Jayabal +4 more
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Researchers have identified that the interactions between metals and their supports have significant impacts on the electrocatalytic activity and durability. However, their interactions have not been well studied.
Subramaniam Jayabal +4 more
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Icosahedral Platinum Alloy Nanocrystals with Enhanced Electrocatalytic Activities
Journal of the American Chemical Society, 2012This communication describes the synthesis of Pt-M (M = Au, Ni, Pd) icosahedral nanocrystals based on the gas reducing agent in liquid solution method. Both CO gas and organic surface capping agents play critical roles in stabilizing the icosahedral shape with {111} surfaces.
Jianbo, Wu +5 more
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ACS Sustainable Chemistry and Engineering, 2019
Previous theoretical work has predicted vanadium and niobium nitrides to be catalytically active toward the electrochemical reduction of dinitrogen to ammonia and inactive for the hydrogen evolution reaction.
H. Du +4 more
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Previous theoretical work has predicted vanadium and niobium nitrides to be catalytically active toward the electrochemical reduction of dinitrogen to ammonia and inactive for the hydrogen evolution reaction.
H. Du +4 more
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User-friendly model predicts electrocatalytic activity
C&EN Global Enterprise, 2018Designing single-metal-atom catalysts that efficiently drive green chemical reactions is simply a matter of looking up readily available data and using that information to choose the metal and its support material, according to a theoretical study (Nat. Catal. 2018, DOI: 10.1038/s41929-018-0063-z).
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