Lignocellulose is the most abundant form of biomass on earth, and its efficient valorization for H2 generation and value-added biochemical production provides a promising strategy to alleviate the currently faced energy shortages. However, the requirements of toxic organic solvents, unsatisfactory conversion, and poor selectivity of biochemicals make the effective biomass photorefinery challenging. Herein, we report the efficient lignocellulose photoreforming including cellulose, hemicellulose, and lignin, using polymeric carbon nitride photocatalyst that was prepared via the pyrolysis of a preorganized supramolecular assembly between cyanuric acid, melamine, and Pt-(NH2-bpy)2. The optimized catalyst exhibits a superior H2 evolution rate of...
Photocatalytic reforming of lignocellulosic biomass is an emerging approach to produce renewable H2 ...
Photoreforming of lignocellulose is a promising approach toward sustainable H2 generation, but this ...
Photoreforming of lignocellulose is a promising approach toward sustainable H2 generation, but this ...
Lignocellulose is the most abundant form of biomass on earth, and its efficient valorization for H2 ...
© The Royal Society of Chemistry 2019. Biomass is a naturally abundant, sustainable and clean resour...
Photoreforming of biomass, as a promising strategy, has gradually become an emerging field to be inv...
Each year, the pulp and paper industry produces approximately 50???million metric tons of lignin as ...
Lignocellulose is Earth’s most abundant form of biomass and its valorization to H$_{2}$ is a key obj...
The valorization of lignin has significant potential in producing commodity chemicals and fuels from...
Biomass photorefining to selectively produce value-added bioproducts is an emerging alternative biom...
Photoreforming of lignocellulose biomass is widely recognised as a challenging but key technology fo...
One prominent goal of 21st century research is to develop a sustainable carbon-neutral biorefinery. ...
The conversion of lignocellulosic biomass to chemical fuel can achieve the sustainable use of lignoc...
Biomass has been considered as a promising energy resource to combat the exhaustion of fossil fuels,...
H2 production by lignocellulose photoreforming is deemed to be a promising approach for the conversi...
Photocatalytic reforming of lignocellulosic biomass is an emerging approach to produce renewable H2 ...
Photoreforming of lignocellulose is a promising approach toward sustainable H2 generation, but this ...
Photoreforming of lignocellulose is a promising approach toward sustainable H2 generation, but this ...
Lignocellulose is the most abundant form of biomass on earth, and its efficient valorization for H2 ...
© The Royal Society of Chemistry 2019. Biomass is a naturally abundant, sustainable and clean resour...
Photoreforming of biomass, as a promising strategy, has gradually become an emerging field to be inv...
Each year, the pulp and paper industry produces approximately 50???million metric tons of lignin as ...
Lignocellulose is Earth’s most abundant form of biomass and its valorization to H$_{2}$ is a key obj...
The valorization of lignin has significant potential in producing commodity chemicals and fuels from...
Biomass photorefining to selectively produce value-added bioproducts is an emerging alternative biom...
Photoreforming of lignocellulose biomass is widely recognised as a challenging but key technology fo...
One prominent goal of 21st century research is to develop a sustainable carbon-neutral biorefinery. ...
The conversion of lignocellulosic biomass to chemical fuel can achieve the sustainable use of lignoc...
Biomass has been considered as a promising energy resource to combat the exhaustion of fossil fuels,...
H2 production by lignocellulose photoreforming is deemed to be a promising approach for the conversi...
Photocatalytic reforming of lignocellulosic biomass is an emerging approach to produce renewable H2 ...
Photoreforming of lignocellulose is a promising approach toward sustainable H2 generation, but this ...
Photoreforming of lignocellulose is a promising approach toward sustainable H2 generation, but this ...