The development of high-performance electrocatalytic systems for the controlled reduction of CO2 to value-added chemicals is a key goal in emerging renewable energy technologies. The lack of selective and scalable catalysts in aqueous solution currently hampers the implementation of such a process. Here, the assembly of a [MnBr(2,2′-bipyridine)(CO)3] complex anchored to a carbon nanotube electrode via a pyrene unit is reported. Immobilization of the molecular catalyst allows electrocatalytic reduction of CO2 under fully aqueous conditions with a catalytic onset overpotential of η = 360 mV, and controlled potential electrolysis generated more than 1000 turnovers at η = 550 mV. The product selectivity can be tuned by alteration of the catalys...
With the goal of improving previously reported Mn bipyridine electrocatalysts in terms of increased ...
With the goal of improving previously reported Mn bipyridine electrocatalysts in terms of increased ...
Immobilization of a Mn polypyridyl CO2 reduction electrocatalyst on nanocrystalline TiO2 electrodes ...
Relatively few solution electrocatalysts for CO2 reduction in aqueous solutions are reported. Howev...
Relatively few solution electrocatalysts for CO2 reduction in aqueous solutions are reported. Howev...
© 2020 American Chemical Society.Electrocatalysis is a promising tool for utilizing carbon dioxide a...
In recent years, the development of transition metal based electrocatalysts has made the utilization...
raw data supporting article: uning Product Selectivity for Aqueous CO2 Reduction with a Mn(bipyridin...
Release of CO2 from fossil fuel consumption has become a growing concern in recent years, with every...
The work included in the thesis was aimed to improve the selectivity regarding the product distribut...
Release of CO2 from fossil fuel consumption has become a growing concern in recent years, with every...
Electrocatalytic reduction of carbon dioxide (CO2) is a profoundly challenging problem that is of in...
With the goal of improving previously reported Mn bipyridine electrocatalysts in terms of increased ...
Immobilization of a Mn polypyridyl CO2 reduction electrocatalyst on nanocrystalline TiO2 electrodes ...
Immobilization of a Mn polypyridyl CO2 reduction electrocatalyst on nanocrystalline TiO2 electrodes ...
With the goal of improving previously reported Mn bipyridine electrocatalysts in terms of increased ...
With the goal of improving previously reported Mn bipyridine electrocatalysts in terms of increased ...
Immobilization of a Mn polypyridyl CO2 reduction electrocatalyst on nanocrystalline TiO2 electrodes ...
Relatively few solution electrocatalysts for CO2 reduction in aqueous solutions are reported. Howev...
Relatively few solution electrocatalysts for CO2 reduction in aqueous solutions are reported. Howev...
© 2020 American Chemical Society.Electrocatalysis is a promising tool for utilizing carbon dioxide a...
In recent years, the development of transition metal based electrocatalysts has made the utilization...
raw data supporting article: uning Product Selectivity for Aqueous CO2 Reduction with a Mn(bipyridin...
Release of CO2 from fossil fuel consumption has become a growing concern in recent years, with every...
The work included in the thesis was aimed to improve the selectivity regarding the product distribut...
Release of CO2 from fossil fuel consumption has become a growing concern in recent years, with every...
Electrocatalytic reduction of carbon dioxide (CO2) is a profoundly challenging problem that is of in...
With the goal of improving previously reported Mn bipyridine electrocatalysts in terms of increased ...
Immobilization of a Mn polypyridyl CO2 reduction electrocatalyst on nanocrystalline TiO2 electrodes ...
Immobilization of a Mn polypyridyl CO2 reduction electrocatalyst on nanocrystalline TiO2 electrodes ...
With the goal of improving previously reported Mn bipyridine electrocatalysts in terms of increased ...
With the goal of improving previously reported Mn bipyridine electrocatalysts in terms of increased ...
Immobilization of a Mn polypyridyl CO2 reduction electrocatalyst on nanocrystalline TiO2 electrodes ...