Photoreforming (PR) of biomass can be considered a viable technology under mild experimental conditions to produce hydrogen with a high reaction rate using compounds from renewable resources and waste materials. The application of biomass PR gives rise to both hydrogen generation and biomass waste valorization. The process could be scaled up to obtain hydrogen under natural sunlight irradiation, and research on polymeric carbon nitride (g-C3N4)-based photocatalysts has been widely carried out in recent years. The non-metallic-based carbon nitride materials are economical and (photo)stable polymer semiconductors, and their physicochemical surface and electronic properties are optimal for obtaining H2, which can be considered a gas that does ...
Fossil fuel dependency has raised serious environmental and resource depletion concerns. Amidst news...
The photocatalytic production of hydrogen represents a fascinating way to convert and store solar en...
Global energy crisis keeps arising and converting intermittent energies into storable chemical fuels...
Photoreforming (PR) of biomass can be considered a viable technology under mild experimental conditi...
Photocatalysis based on the use of semiconductors has gained, during the recent years, increased a...
Photoreforming of biomass, as a promising strategy, has gradually become an emerging field to be inv...
© 2018 Elsevier Ltd All rights reserved. Photocatalysis processes for producing alternative and sust...
This chapter summarizes the utilization of promoted graphitic carbon nitride (gCN) semiconductors in...
Bare and composite materials based on C3N4 and Nb2O5 have been used as photocatalysts for the photor...
The development of reliable renewable energy sources is imperative for a sustainable future. To addr...
The production of hydrogen from water using a catalyst and solar energy is an ideal future energy so...
The current energy and environmental crises have been the two greatest challenges impeding the devel...
Artificial photosynthesis utilises solar-light for clean fuel H2 production and is emerging as a pot...
The aim of this work is the systematic study of the photocatalytic activity of bulk graphitic carbon...
Recently, graphitic carbon nitride (g-C3N4), a polymeric semiconductorhas been widely used as a low-...
Fossil fuel dependency has raised serious environmental and resource depletion concerns. Amidst news...
The photocatalytic production of hydrogen represents a fascinating way to convert and store solar en...
Global energy crisis keeps arising and converting intermittent energies into storable chemical fuels...
Photoreforming (PR) of biomass can be considered a viable technology under mild experimental conditi...
Photocatalysis based on the use of semiconductors has gained, during the recent years, increased a...
Photoreforming of biomass, as a promising strategy, has gradually become an emerging field to be inv...
© 2018 Elsevier Ltd All rights reserved. Photocatalysis processes for producing alternative and sust...
This chapter summarizes the utilization of promoted graphitic carbon nitride (gCN) semiconductors in...
Bare and composite materials based on C3N4 and Nb2O5 have been used as photocatalysts for the photor...
The development of reliable renewable energy sources is imperative for a sustainable future. To addr...
The production of hydrogen from water using a catalyst and solar energy is an ideal future energy so...
The current energy and environmental crises have been the two greatest challenges impeding the devel...
Artificial photosynthesis utilises solar-light for clean fuel H2 production and is emerging as a pot...
The aim of this work is the systematic study of the photocatalytic activity of bulk graphitic carbon...
Recently, graphitic carbon nitride (g-C3N4), a polymeric semiconductorhas been widely used as a low-...
Fossil fuel dependency has raised serious environmental and resource depletion concerns. Amidst news...
The photocatalytic production of hydrogen represents a fascinating way to convert and store solar en...
Global energy crisis keeps arising and converting intermittent energies into storable chemical fuels...