This work was funded by the EP/J018139/1, EP/K00445X/1 grants and an EPSRC Doctoral Prize Fellowship.If the lignin-first biorefinery concept becomes reality, high quality lignins close in structure to native lignins will become available in large quantities. One potential way to utilise this renewable material is through depolymerisation to aromatic chemicals. This will require the development of new chemical methods. Here, we report the synthesis and characterisation of advanced lignin model polymers to be used as tools to develop these methods. The controlled incorporation of the major linkages in lignin is demonstrated to give complex hardwood and softwood lignin model polymers. These polymers have been characterised by 2D HSQC NMR and G...
Lignin is a heteropolymer that is thought to form in the cell wall by combinatorial radical coupling...
Lignin depolymerisation has recently a great deal of attention from scientists and companies worldwi...
Polymers made from natural biomass are gaining interest due to the rising environmental concerns and...
If the lignin-first biorefinery concept becomes reality, high quality lignins close in structure to ...
The development of fundamentally new valorization strategies for lignin plays a vital role in unlock...
The development of fundamentally new approaches for lignin depolymerization is challenged by the com...
This work was funded by the EP/J018139/1, EP/K00445X/1 grants (NJW and PCJK), an EPSRC Doctoral Priz...
Lignin, as the most abundant aromatic polymer, renders a great opportunity to produce sustainable ar...
The development of fundamentally new approaches for lignin depolymerization is challenged by the com...
Lignin, a major component of lignocellulose, is the largest source of aromatic building blocks on th...
The development of fundamentally new approaches for lignin depolymerization is challenged by the com...
Lignocellulosic biomass is a sustainable source of renewable carbon, and it is the most abundant for...
The development of fundamentally new valorization strategies for lignin plays a vital role in unlock...
From the Washington University Office of Undergraduate Research Digest (WUURD), Vol. 13, 05-01-2018....
Lignin is a heteropolymer that is thought to form in the cell wall by combinatorial radical coupling...
Lignin depolymerisation has recently a great deal of attention from scientists and companies worldwi...
Polymers made from natural biomass are gaining interest due to the rising environmental concerns and...
If the lignin-first biorefinery concept becomes reality, high quality lignins close in structure to ...
The development of fundamentally new valorization strategies for lignin plays a vital role in unlock...
The development of fundamentally new approaches for lignin depolymerization is challenged by the com...
This work was funded by the EP/J018139/1, EP/K00445X/1 grants (NJW and PCJK), an EPSRC Doctoral Priz...
Lignin, as the most abundant aromatic polymer, renders a great opportunity to produce sustainable ar...
The development of fundamentally new approaches for lignin depolymerization is challenged by the com...
Lignin, a major component of lignocellulose, is the largest source of aromatic building blocks on th...
The development of fundamentally new approaches for lignin depolymerization is challenged by the com...
Lignocellulosic biomass is a sustainable source of renewable carbon, and it is the most abundant for...
The development of fundamentally new valorization strategies for lignin plays a vital role in unlock...
From the Washington University Office of Undergraduate Research Digest (WUURD), Vol. 13, 05-01-2018....
Lignin is a heteropolymer that is thought to form in the cell wall by combinatorial radical coupling...
Lignin depolymerisation has recently a great deal of attention from scientists and companies worldwi...
Polymers made from natural biomass are gaining interest due to the rising environmental concerns and...