With the spread of alternative energy plants, electrolysis processes are becoming the protagonists of the future industrial generation. The technology readiness level for the electrochemical reduction of carbon dioxide is still low and is largely based on precious metal resources. In the present work, tin ions are anchored on a polyaniline matrix, via a sonochemical synthesis, forming a few atomic layers of chlorine-doped SnO2 with a total loading of tin atom load of only 7 wt %. This catalyst is able to produce formate (HCOO-) with great selectivity, exceeding 72% of Faradaic efficiency in the first hour of testing in 1 M KHCO3 electrolyte, with a current density of more than 50 mA cm-2 in a 2 M KHCO3 electrolyte flow cell setup. Catalyst ...
AbstractThe electrochemical reduction of CO2 to value‐added products like formate represents a promi...
Electrocatalytic CO2 reduction powered by renewable electricity has been considered as a promising a...
Mesoporous catalyst support based on tin oxide (SnO2) is synthesized with high surface area of 205 ...
Tin oxide nanoparticles (SnO2 NPs) as electrocatalyst for the production of formate from CO2 reducti...
Electrochemical conversion of CO2 into value-added chemicals such as formic acid shows promise in ca...
Currently, low catalytic activity, selectivity and stability are the biggest challenges which restri...
In this Article, we present an easy, quick, and scalable route, based on anodic oxidation, for the p...
Electrochemically reducing CO2 to valuable fuels or feedstocks is recognized as a promising strategy...
Controlling the selectivity in electrochemical CO2 reduction is an unsolved challenge. While tin (Sn...
CO2 emissions from the combustion of fossil fuels and other anthropogenic sources have become the ma...
The research for renewable energy has always been a top priority as fossil fuel is expected to deple...
Abstract We investigate tin (Sn) and tin oxide (SnO2) nanoparticle catalysts deposi...
7/8/2015Electrochemical CO₂ reduction is discussed in detail in Chapter 1, from its beginnings on me...
Electrochemical reduction of CO2 CO2RR driven by renewable energy has gained increasing attention ...
Electrocatalytic CO2reduction is an effective way to close the global carbon cycle. Tin oxides have ...
AbstractThe electrochemical reduction of CO2 to value‐added products like formate represents a promi...
Electrocatalytic CO2 reduction powered by renewable electricity has been considered as a promising a...
Mesoporous catalyst support based on tin oxide (SnO2) is synthesized with high surface area of 205 ...
Tin oxide nanoparticles (SnO2 NPs) as electrocatalyst for the production of formate from CO2 reducti...
Electrochemical conversion of CO2 into value-added chemicals such as formic acid shows promise in ca...
Currently, low catalytic activity, selectivity and stability are the biggest challenges which restri...
In this Article, we present an easy, quick, and scalable route, based on anodic oxidation, for the p...
Electrochemically reducing CO2 to valuable fuels or feedstocks is recognized as a promising strategy...
Controlling the selectivity in electrochemical CO2 reduction is an unsolved challenge. While tin (Sn...
CO2 emissions from the combustion of fossil fuels and other anthropogenic sources have become the ma...
The research for renewable energy has always been a top priority as fossil fuel is expected to deple...
Abstract We investigate tin (Sn) and tin oxide (SnO2) nanoparticle catalysts deposi...
7/8/2015Electrochemical CO₂ reduction is discussed in detail in Chapter 1, from its beginnings on me...
Electrochemical reduction of CO2 CO2RR driven by renewable energy has gained increasing attention ...
Electrocatalytic CO2reduction is an effective way to close the global carbon cycle. Tin oxides have ...
AbstractThe electrochemical reduction of CO2 to value‐added products like formate represents a promi...
Electrocatalytic CO2 reduction powered by renewable electricity has been considered as a promising a...
Mesoporous catalyst support based on tin oxide (SnO2) is synthesized with high surface area of 205 ...