The development of selective electrocatalysts for the chlorine evolution reaction (CER) is majorly restrained by a scaling relation between the OCl and OOH adsorbates, rendering that active CER catalysts are also reasonably active in the competing oxygen evolution reaction (OER). While theory predicts that the OCl versus OOH scaling relation can be circumvented as soon as the elementary reaction steps in the CER comprise the Cl rather than the OCl adsorbate, it was demonstrated recently that PtN4 sites embedded in a carbon nanotube follow this theoretical prediction. Advanced experimental analyses illustrate that the PtN4 sites also reveal a different reaction kinetics compared to the industrial benchmark of dimensionally stable anodes (DSA...
In the chlorate process, natural convection arises thanks to the hydrogen evolving cathode. This inc...
The dependencies of the current density and surface coverage of the adsorbed intermediates on overpo...
Nitrogen-doped carbon nanostructures (CNx) are promising cathode materials as catalysts for the oxyg...
The electrochemical chlorine evolution reaction (CER) is a key anodic reaction in the chlor-alkali p...
Chlorine evolution reaction (CER) is a critical anode reaction in various processes, such as the Cl2...
Electrochemical chlorine evolution reaction (CER) is a major anodic reaction for Cl2 production or o...
In the industrial large-scale chlor-alkali process, the electrocatalytic chlorine evolution reaction...
Chlorine evolution reaction (CER) is a critical anode reaction in chlor-alkali electrolysis. Althoug...
MAT.P-300 Promoting Activity and Selectivity of Electrochemical Chlorine Evolution Reaction by Atomi...
The electrochemical chlorine evolution reaction (CER) and oxygen evolution reaction (OER) represent ...
A number of electrodes which are catalysts for the chlorine evolution reaction have been investigate...
The realization of a hydrogen economy would be facilitated by the discovery of a water-splitting ele...
The faradaic selectivity of the chlorine evolution reaction (CER) and oxygen evolution reaction (OER...
The chlorine evolution reaction (CER) is a key reaction in electrochemical oxidation (EO) of water t...
Abundant availability of seawater grants economic and resource-rich benefits to water electrolysis t...
In the chlorate process, natural convection arises thanks to the hydrogen evolving cathode. This inc...
The dependencies of the current density and surface coverage of the adsorbed intermediates on overpo...
Nitrogen-doped carbon nanostructures (CNx) are promising cathode materials as catalysts for the oxyg...
The electrochemical chlorine evolution reaction (CER) is a key anodic reaction in the chlor-alkali p...
Chlorine evolution reaction (CER) is a critical anode reaction in various processes, such as the Cl2...
Electrochemical chlorine evolution reaction (CER) is a major anodic reaction for Cl2 production or o...
In the industrial large-scale chlor-alkali process, the electrocatalytic chlorine evolution reaction...
Chlorine evolution reaction (CER) is a critical anode reaction in chlor-alkali electrolysis. Althoug...
MAT.P-300 Promoting Activity and Selectivity of Electrochemical Chlorine Evolution Reaction by Atomi...
The electrochemical chlorine evolution reaction (CER) and oxygen evolution reaction (OER) represent ...
A number of electrodes which are catalysts for the chlorine evolution reaction have been investigate...
The realization of a hydrogen economy would be facilitated by the discovery of a water-splitting ele...
The faradaic selectivity of the chlorine evolution reaction (CER) and oxygen evolution reaction (OER...
The chlorine evolution reaction (CER) is a key reaction in electrochemical oxidation (EO) of water t...
Abundant availability of seawater grants economic and resource-rich benefits to water electrolysis t...
In the chlorate process, natural convection arises thanks to the hydrogen evolving cathode. This inc...
The dependencies of the current density and surface coverage of the adsorbed intermediates on overpo...
Nitrogen-doped carbon nanostructures (CNx) are promising cathode materials as catalysts for the oxyg...