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Revealing High Oxygen Evolution Catalytic Activity of Fluorine-Doped Carbon in Alkaline Media
by
Murakoshi, Kei
, Zhou, Ruifeng
, Kim, Jeheon
, Fukushima, Tomohiro
in
Aqueous solutions
/ Carbon
/ Catalysis
/ Catalytic activity
/ Chemical evolution
/ Electrochemical potential
/ Electrode polarization
/ Electrodes
/ Electrolytes
/ Evaluation
/ Fluorescence
/ Fluorine
/ Kinetics
/ Mass spectrometry
/ Metal oxides
/ Methods
/ Noise levels
/ Oxidation
/ Sensors
/ Shear flow
2019
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Revealing High Oxygen Evolution Catalytic Activity of Fluorine-Doped Carbon in Alkaline Media
by
Murakoshi, Kei
, Zhou, Ruifeng
, Kim, Jeheon
, Fukushima, Tomohiro
in
Aqueous solutions
/ Carbon
/ Catalysis
/ Catalytic activity
/ Chemical evolution
/ Electrochemical potential
/ Electrode polarization
/ Electrodes
/ Electrolytes
/ Evaluation
/ Fluorescence
/ Fluorine
/ Kinetics
/ Mass spectrometry
/ Metal oxides
/ Methods
/ Noise levels
/ Oxidation
/ Sensors
/ Shear flow
2019
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Do you wish to request the book?
Revealing High Oxygen Evolution Catalytic Activity of Fluorine-Doped Carbon in Alkaline Media
by
Murakoshi, Kei
, Zhou, Ruifeng
, Kim, Jeheon
, Fukushima, Tomohiro
in
Aqueous solutions
/ Carbon
/ Catalysis
/ Catalytic activity
/ Chemical evolution
/ Electrochemical potential
/ Electrode polarization
/ Electrodes
/ Electrolytes
/ Evaluation
/ Fluorescence
/ Fluorine
/ Kinetics
/ Mass spectrometry
/ Metal oxides
/ Methods
/ Noise levels
/ Oxidation
/ Sensors
/ Shear flow
2019
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Revealing High Oxygen Evolution Catalytic Activity of Fluorine-Doped Carbon in Alkaline Media
Journal Article
Revealing High Oxygen Evolution Catalytic Activity of Fluorine-Doped Carbon in Alkaline Media
2019
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Overview
Oxygen evolution reactions (OER) are important reactions for energy conversion. Metal-free carbon-based catalysts potentially contribute to the catalytic materials for OER. However, it has been difficult to understand the intrinsic catalytic activity of carbon materials, due to catalyst decomposition over the course of long-term reactions. Here, we report high oxygen evolution reaction catalytic activity of F-doped carbon in alkaline media. Intrinsic OER activity was evaluated from a combination of measurements using a rotating disk electrode and O2 sensor. The F-doped carbon catalyst is a highly active catalyst, comparable to state-of-the-art precious-metal-based catalysts such as RuO2.
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