Use of solar energy to convert the greenhouse gas CO2 into useful chemicals or fuels could not only reduce the accumulation of CO2 in the atmosphere but also provide a solution to sustainable energy development. There has been much interest in understanding the mechanistic role of graphene when added to semiconductor nanostructures to reduce CO2because of the observation of enhanced photocatalytic activities in recent experiments. In this work, we investigate the adsorption and single-electron activation of CO2 on ZnO nanoclusters with and without a modified graphene support using a first-principles approach, with a special focus on the effect of the support. The formation of the CO2– anion is identified under simulated photoexcitation cond...
Converting CO2 to fuels is required to enable the production of sustainable fuels and to contribute ...
Different graphene structures have received much attention due to their unique chemical and electron...
ZnV2O6 modified by graphite is a promising photocatalyst to improve CO2 reduction efficiency. In thi...
The photocatalytic activity of graphene-semiconductor nanocomposites and their ability to effectivel...
This work aims to efficiently capture CO on two-dimensional (2D) nanostructures for effective cleani...
Computational Study of CO2 Adsorption and Activation on Graphene Supported Metal Clusters Abstract F...
Computational Study of CO2 Adsorption and Activation on Graphene Supported Metal Clusters Abstract F...
Surface modification is a reliable method to enhance the sensing properties of pristine graphene by ...
Production of synthetic chemical fuels from solar energy is critical for us to meet the globally gro...
Recently, semiconductor photocatalysts have received significant interest in addressing the global e...
Production of synthetic chemical fuels from solar energy is critical for us to meet the globally gro...
Different graphene structures have received much attention due to their unique chemical and electron...
Different graphene structures have received much attention due to their unique chemical and electron...
Different graphene structures have received much attention due to their unique chemical and electron...
Different graphene structures have received much attention due to their unique chemical and electron...
Converting CO2 to fuels is required to enable the production of sustainable fuels and to contribute ...
Different graphene structures have received much attention due to their unique chemical and electron...
ZnV2O6 modified by graphite is a promising photocatalyst to improve CO2 reduction efficiency. In thi...
The photocatalytic activity of graphene-semiconductor nanocomposites and their ability to effectivel...
This work aims to efficiently capture CO on two-dimensional (2D) nanostructures for effective cleani...
Computational Study of CO2 Adsorption and Activation on Graphene Supported Metal Clusters Abstract F...
Computational Study of CO2 Adsorption and Activation on Graphene Supported Metal Clusters Abstract F...
Surface modification is a reliable method to enhance the sensing properties of pristine graphene by ...
Production of synthetic chemical fuels from solar energy is critical for us to meet the globally gro...
Recently, semiconductor photocatalysts have received significant interest in addressing the global e...
Production of synthetic chemical fuels from solar energy is critical for us to meet the globally gro...
Different graphene structures have received much attention due to their unique chemical and electron...
Different graphene structures have received much attention due to their unique chemical and electron...
Different graphene structures have received much attention due to their unique chemical and electron...
Different graphene structures have received much attention due to their unique chemical and electron...
Converting CO2 to fuels is required to enable the production of sustainable fuels and to contribute ...
Different graphene structures have received much attention due to their unique chemical and electron...
ZnV2O6 modified by graphite is a promising photocatalyst to improve CO2 reduction efficiency. In thi...