Silver electrocatalysts offer the possibility to produce CO by converting CO2, enabling the use of a greenhouse gas as chemical building block. Compared to nanoparticles, silver nanowires show an enhanced selectivity towards CO. Recent publications proved that oxide-derived electrocatalysts can exhibit better catalytic performance than the pristine metal phase, but oxide-derived silver nanowires have not been investigated. In this work, we report for the first time the electrocatalytic properties of silver nanowires, synthesized via the polyol method, and pretreated by electrochemical oxidation in basic electrolyte. By increasing the oxidation potential, both the percentage of AgxO and the surface roughness of the catalyst were progressivel...
The aimed reduction of fossil carbon sources in our society does not only includes fossil fuels but ...
Copper and silver nanowires have been extensively investigated as the next generation of transparent...
In this work, we discuss the application of a gas diffusion electrode (GDE) setup for benchmarking e...
Silver electrocatalysts offer the possibility to produce CO by converting CO2, enabling the use of a...
In this work, the selective electrocatalytic reduction of carbon dioxide to carbon monoxide on oxide...
The electrochemical reduction of carbon dioxide (CO2RR) to value-added chemicals using excess interm...
Core-shell nanowires with conductive metal cores and active catalyst shells hold great promise for m...
Electrocatalysis of carbon dioxide can provide a valuable pathway towards the sustainable production...
The mass production of silver nanowires (Ag NWs) with ultrathin diameter (∼35 nm) and a high aspect ...
Efficient, stable catalysts with high selectivity for a single product are essential if electroreduc...
Metallic silver (Ag) is known as an efficient electrocatalyst for the conversion of carbon dioxide (...
Electrochemical reduction of CO<sub>2</sub> is a promising method to convert CO<sub>2</sub> into fue...
Electrochemical reduction of CO2 is a promising method to convert CO2 into fuels or useful chemicals...
Silver electrocatalysts enable the conversion of CO2 to CO, thereby facilitating the transition to a...
By using silver (Ag) in nanostructured (nanowire, nanosphere, etc.) or thin-layer form as a catalyst...
The aimed reduction of fossil carbon sources in our society does not only includes fossil fuels but ...
Copper and silver nanowires have been extensively investigated as the next generation of transparent...
In this work, we discuss the application of a gas diffusion electrode (GDE) setup for benchmarking e...
Silver electrocatalysts offer the possibility to produce CO by converting CO2, enabling the use of a...
In this work, the selective electrocatalytic reduction of carbon dioxide to carbon monoxide on oxide...
The electrochemical reduction of carbon dioxide (CO2RR) to value-added chemicals using excess interm...
Core-shell nanowires with conductive metal cores and active catalyst shells hold great promise for m...
Electrocatalysis of carbon dioxide can provide a valuable pathway towards the sustainable production...
The mass production of silver nanowires (Ag NWs) with ultrathin diameter (∼35 nm) and a high aspect ...
Efficient, stable catalysts with high selectivity for a single product are essential if electroreduc...
Metallic silver (Ag) is known as an efficient electrocatalyst for the conversion of carbon dioxide (...
Electrochemical reduction of CO<sub>2</sub> is a promising method to convert CO<sub>2</sub> into fue...
Electrochemical reduction of CO2 is a promising method to convert CO2 into fuels or useful chemicals...
Silver electrocatalysts enable the conversion of CO2 to CO, thereby facilitating the transition to a...
By using silver (Ag) in nanostructured (nanowire, nanosphere, etc.) or thin-layer form as a catalyst...
The aimed reduction of fossil carbon sources in our society does not only includes fossil fuels but ...
Copper and silver nanowires have been extensively investigated as the next generation of transparent...
In this work, we discuss the application of a gas diffusion electrode (GDE) setup for benchmarking e...