Carbon materials are widely applied as conductive additives in studies of the oxygen evolution reaction (OER) in alkaline media catalyzed by transition metal oxides. In this work we investigate the anodic behavior of three representative carbon materials: furnace black (Vulcan XC-72R), acetylene black, and pyrolytic carbon of the Sibunit family (Sibunit-152), in 1 M NaOH at high potentials (ranging from the OER onset and up to ca. 2 V vs. RHE) in the time span from several minutes to several hours. We apply the rotating ring-disk electrode (RRDE) to separate the OER current from the carbon corrosion current. We then use transmission electron microscopy (TEM) to visualize changes in the carbon morphology resulting from corrosion. Finally, we...
International audienceThis study bridges the structural and the chemical properties of a high surfac...
Carbon is a frequently used electrode material and an important additive in catalyst films. Its corr...
13 figures, 5 tables.-- This article belongs to the Special Issue Electrocatalysts for Sustainable E...
Carbon materials are widely applied as conductive additives in studies of the oxygen evolution react...
Carbon-based materials have shown promises as cost-effective catalysts. It is essential to understan...
Glassy carbon is widely used in electrochemistry due to its properties of high temperature resistanc...
'4C labeling of acetylene black was used together with mass spectroscopic analysis of the gas e...
Highly oxygen evolution reaction (OER)-active electrocatalysts often exhibit improved OER durability...
A study of electrocatalysis of oxygen reduction (ORR) and oxygen evolution (OER) reactions is closel...
Detailed studies of the electrochemical oxygen reduction reaction (ORR) on catalyst materials are cr...
The electrochemical oxygen reduction reaction (ORR) is the key energy conversion reaction involved i...
Single and double perovskite oxides have been reported to be amongst the most active electrocatalyst...
Carbon as a material is thermodynamically unstable at phosphoric acid fuel cell cathode operating co...
Highly oxygen evolution reaction (OER)-active electrocatalysts often exhibit improved OER durability...
While activated carbons are used as electrode materials in commercial supercapacitors, they are not ...
International audienceThis study bridges the structural and the chemical properties of a high surfac...
Carbon is a frequently used electrode material and an important additive in catalyst films. Its corr...
13 figures, 5 tables.-- This article belongs to the Special Issue Electrocatalysts for Sustainable E...
Carbon materials are widely applied as conductive additives in studies of the oxygen evolution react...
Carbon-based materials have shown promises as cost-effective catalysts. It is essential to understan...
Glassy carbon is widely used in electrochemistry due to its properties of high temperature resistanc...
'4C labeling of acetylene black was used together with mass spectroscopic analysis of the gas e...
Highly oxygen evolution reaction (OER)-active electrocatalysts often exhibit improved OER durability...
A study of electrocatalysis of oxygen reduction (ORR) and oxygen evolution (OER) reactions is closel...
Detailed studies of the electrochemical oxygen reduction reaction (ORR) on catalyst materials are cr...
The electrochemical oxygen reduction reaction (ORR) is the key energy conversion reaction involved i...
Single and double perovskite oxides have been reported to be amongst the most active electrocatalyst...
Carbon as a material is thermodynamically unstable at phosphoric acid fuel cell cathode operating co...
Highly oxygen evolution reaction (OER)-active electrocatalysts often exhibit improved OER durability...
While activated carbons are used as electrode materials in commercial supercapacitors, they are not ...
International audienceThis study bridges the structural and the chemical properties of a high surfac...
Carbon is a frequently used electrode material and an important additive in catalyst films. Its corr...
13 figures, 5 tables.-- This article belongs to the Special Issue Electrocatalysts for Sustainable E...