Nowadays, Sn-based electrocatalysts for the electrochemical CO2 reduction reaction (eCO2RR) toward formic acid have been reported to reach industrially relevant current densities and Faradaic efficiencies approaching 100%. However, electrocatalyst stability remains inadequate and appears to be a crucial piece to the puzzle, as lifetimes in the range of several thousands of hours should be reached for practical application and economic viability. Here, we provide insights into stability issues related to Sn-based electrocatalysts and electrolyzers for formic acid production. By determining the chemical and physical phenomena that occur during the electrochemical reduction reaction on the surface and bulk of Sn-based catalysts, we intend to e...
CO2 electroreduction to formate powered by renewable energy is an attractive strategy to recycle air...
CO2 electroreduction to formate powered by renewable energy is an attractive strategy to recycle air...
Electrochemical conversion of CO2 in the aqueous electrolyte into value-added chemicals is considere...
The electrochemical reduction of carbon dioxide into carbon monoxide, hydrocarbons and formic acid h...
The electrochemical conversion of carbon dioxide is considered one of the most promising strategies ...
In this study, a selective Sn based catalytic system that electrochemically reduces CO2 to formate h...
Electrochemically reducing CO2 to valuable fuels or feedstocks is recognized as a promising strategy...
CO2 emissions from the combustion of fossil fuels and other anthropogenic sources have become the ma...
Electrochemical conversion of CO2 into formic acid (FA) in an aqueous electrolyte is considered a pr...
To mitigate the excessively accumulated carbon dioxide (CO2) in the atmosphere and tackle the associ...
Electrochemical reduction of carbon dioxide (CO2RR) to formate provides an avenue to the synthesis o...
Electrochemical reduction of carbon dioxide (CO2RR) to formate provides an avenue to the synthesis o...
In our previous paper, we described in detail studies of Sn influence on electrocatalytic activity o...
CO2 electroreduction to formate powered by renewable energy is an attractive strategy to recycle air...
Sn-based materials can be used as electrocatalysts for the CO2 electroreduction reaction (CO2RR), pr...
CO2 electroreduction to formate powered by renewable energy is an attractive strategy to recycle air...
CO2 electroreduction to formate powered by renewable energy is an attractive strategy to recycle air...
Electrochemical conversion of CO2 in the aqueous electrolyte into value-added chemicals is considere...
The electrochemical reduction of carbon dioxide into carbon monoxide, hydrocarbons and formic acid h...
The electrochemical conversion of carbon dioxide is considered one of the most promising strategies ...
In this study, a selective Sn based catalytic system that electrochemically reduces CO2 to formate h...
Electrochemically reducing CO2 to valuable fuels or feedstocks is recognized as a promising strategy...
CO2 emissions from the combustion of fossil fuels and other anthropogenic sources have become the ma...
Electrochemical conversion of CO2 into formic acid (FA) in an aqueous electrolyte is considered a pr...
To mitigate the excessively accumulated carbon dioxide (CO2) in the atmosphere and tackle the associ...
Electrochemical reduction of carbon dioxide (CO2RR) to formate provides an avenue to the synthesis o...
Electrochemical reduction of carbon dioxide (CO2RR) to formate provides an avenue to the synthesis o...
In our previous paper, we described in detail studies of Sn influence on electrocatalytic activity o...
CO2 electroreduction to formate powered by renewable energy is an attractive strategy to recycle air...
Sn-based materials can be used as electrocatalysts for the CO2 electroreduction reaction (CO2RR), pr...
CO2 electroreduction to formate powered by renewable energy is an attractive strategy to recycle air...
CO2 electroreduction to formate powered by renewable energy is an attractive strategy to recycle air...
Electrochemical conversion of CO2 in the aqueous electrolyte into value-added chemicals is considere...