A novel gas-phase electrocatalytic system based on a low-temperature proton exchange membrane (Sterion) was developed for the gas-phase electrocatalytic conversion of CO2 to liquid fuels. This system achieved gas-phase electrocatalytic reduction of CO2 at low temperatures (below 90 °C) over a Cu cathode by using water electrolysis-derived protons generated in-situ on an IrO2 anode. Three Cu-based cathodes with varying metal particle sizes were prepared by supporting this metal on an activated carbon at three loadings (50, 20, and 10 wt %; 50% Cu-AC, 20% Cu-AC, and 10% Cu-AC, respectively). The cathodes were characterized by N2 adsorption–desorption, temperature-programmed reduction (TPR), and X-ray diffraction (XRD) and their perf...
Rapid industrialization and use of carbon based fuels has caused a drastic increase in the atmospher...
© 2017 Fuel cell reactors or electrolyzers based on alkaline anion-exchange membrane and proton exch...
We discussed here on a novel approach to reduce CO2 back to liquid fuels by using an electrochemical...
A novel gas-phase electrocatalytic system based on a low-temperature proton exchange membrane (Steri...
A novel gas-phase electrocatalytic system based on a low-temperature proton exchange membrane (Steri...
A novel electrocatalytic system based on a low temperature proton exchange membrane (Sterion) was d...
In this study, the electrochemical reduction of gaseous carbon dioxide (CO2) at low-intermediate tem...
The atmospheric concentration of CO2 has increased significantly during the last two centuries. Sinc...
A novel gas-phase electrocatalytic cell containing a low-temperature proton exchange membrane (PEM) ...
We have developed a novel gas-phase electrocatalytic system for the conversion of CO2 into added-val...
Electrocatalytic reduction of CO2 is one possibility to solve the electrical energy storage problem ...
The increase of CO2 concentration in the atmosphere after industrial revolution plays a critical rol...
The electrochemical reduction of CO2 to ethylene has the potential to reduce greenhouse gas emission...
Master's thesis in Petroleum engineering.The atmospheric concentration of CO2 has been rising progre...
The electrochemical reduction of CO2 remains an appealing option for storing renewable energy in a c...
Rapid industrialization and use of carbon based fuels has caused a drastic increase in the atmospher...
© 2017 Fuel cell reactors or electrolyzers based on alkaline anion-exchange membrane and proton exch...
We discussed here on a novel approach to reduce CO2 back to liquid fuels by using an electrochemical...
A novel gas-phase electrocatalytic system based on a low-temperature proton exchange membrane (Steri...
A novel gas-phase electrocatalytic system based on a low-temperature proton exchange membrane (Steri...
A novel electrocatalytic system based on a low temperature proton exchange membrane (Sterion) was d...
In this study, the electrochemical reduction of gaseous carbon dioxide (CO2) at low-intermediate tem...
The atmospheric concentration of CO2 has increased significantly during the last two centuries. Sinc...
A novel gas-phase electrocatalytic cell containing a low-temperature proton exchange membrane (PEM) ...
We have developed a novel gas-phase electrocatalytic system for the conversion of CO2 into added-val...
Electrocatalytic reduction of CO2 is one possibility to solve the electrical energy storage problem ...
The increase of CO2 concentration in the atmosphere after industrial revolution plays a critical rol...
The electrochemical reduction of CO2 to ethylene has the potential to reduce greenhouse gas emission...
Master's thesis in Petroleum engineering.The atmospheric concentration of CO2 has been rising progre...
The electrochemical reduction of CO2 remains an appealing option for storing renewable energy in a c...
Rapid industrialization and use of carbon based fuels has caused a drastic increase in the atmospher...
© 2017 Fuel cell reactors or electrolyzers based on alkaline anion-exchange membrane and proton exch...
We discussed here on a novel approach to reduce CO2 back to liquid fuels by using an electrochemical...