ABSTRACT: The directed depolymerization of lignin biopolymers is of utmost relevance for the valorization or commercialization of biomass fuels. We present a computational and theoretical screening approach to identify potential cleavage pathways and resulting fragments that are formed during depolymerization of lignin oligomers containing two to six monomers. We have developed a chemical discovery technique to identify the chemically relevant putative fragments in eight known polymeric linkage types of lignin. Obtaining these structures is a crucial precursor to the development of any further kinetic modeling. We have developed this approach by adapting steered molecular dynamics calculations under constant force and varying the points of ...
The development of fundamentally new approaches for lignin depolymerization is challenged by the com...
The development of fundamentally new valorization strategies for lignin plays a vital role in unlock...
Acid catalysis has long been used to depolymerize plant cell wall polysaccharides, and the mechanism...
The directed depolymerization of lignin biopolymers is of utmost relevance for the valorization or c...
The directed depolymerization of lignin biopolymers is of utmost relevance for the valorization or c...
Lignocellulosic biomass is an abundant, rich source of aromatic compounds, but direct utilization of...
htmlabstractLignin is a heteropolymer that is thought to form in the cell wall by combinatorial radi...
Lignin is a lignocellulose biomass, which is the second most abundant natural polymer after cellulos...
Lignin in plant cell walls is a potential renewable source of biofuels, chemicals, and value-added p...
Acid catalysis has long been used to depolymerize plant cell wall polysaccharides, and the mechanism...
Lignin is the most abundant natural polymer composed by aromatic moieties. Its chemical composition ...
The development of fundamentally new approaches for lignin depolymerization is challenged by the com...
The detailed mechanism of the base-catalyzed C-C and C-O bond cleavage of a model compound represent...
The detailed mechanism of the base-catalyzed C-C and C-O bond cleavage of a model compound represent...
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...
The development of fundamentally new valorization strategies for lignin plays a vital role in unlock...
Acid catalysis has long been used to depolymerize plant cell wall polysaccharides, and the mechanism...
The directed depolymerization of lignin biopolymers is of utmost relevance for the valorization or c...
The directed depolymerization of lignin biopolymers is of utmost relevance for the valorization or c...
Lignocellulosic biomass is an abundant, rich source of aromatic compounds, but direct utilization of...
htmlabstractLignin is a heteropolymer that is thought to form in the cell wall by combinatorial radi...
Lignin is a lignocellulose biomass, which is the second most abundant natural polymer after cellulos...
Lignin in plant cell walls is a potential renewable source of biofuels, chemicals, and value-added p...
Acid catalysis has long been used to depolymerize plant cell wall polysaccharides, and the mechanism...
Lignin is the most abundant natural polymer composed by aromatic moieties. Its chemical composition ...
The development of fundamentally new approaches for lignin depolymerization is challenged by the com...
The detailed mechanism of the base-catalyzed C-C and C-O bond cleavage of a model compound represent...
The detailed mechanism of the base-catalyzed C-C and C-O bond cleavage of a model compound represent...
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...
The development of fundamentally new valorization strategies for lignin plays a vital role in unlock...
Acid catalysis has long been used to depolymerize plant cell wall polysaccharides, and the mechanism...