The reaction of laccase from Trametes hirsuta with monomeric and dimeric lignin model compounds was studied with special attention to the formation of polymeric reaction products. Different HPLC techniques were evaluated for the analysis of the reaction products. Methods requiring a solvent change from aqueous to organic phase were found not to be adequate for the analysis of product mixtures since evaporation over nitrogen led to the polymerization of reactive monomers and extraction with dichloromethane was not quantitative in all cases. Therefore, aqueous phase size-exclusion chromatography (SEC) at high pH was used to characterize reaction product mixtures. The product molecular weight distribution (MWD) after reaction with laccase was ...
The interaction between fungal laccases from Trametes basidiomycetes and different lignins has been ...
The ability of Streptomyces ipomoea laccase to polymerize secoisolariciresinol lignan and technical ...
Lignin is a highly abundant aromatic polymer in nature, but its controlled cleavage or cross-linking...
In this study the oxidative polymerization of different lignins, i.e. Flax Soda lignin, Spruce EMAL,...
The enzymatic oxidative polymerization of five technical lignins with different molecular properties...
Lignin preparations from kraft and sulfite pulping, steam explosion, and enzyme saccharification pro...
Lignin preparations from kraft and sulfite pulping, steam explosion, and enzyme saccharification pro...
The stability and reactivity of five different thermostable fungal laccases from the species Tramete...
Lignins are important biopolymers that can be converted into value-added materials by enzymatic trea...
Lignins are important biopolymers that can be converted into value-added materials by enzymatic trea...
Lignin, the second most abundant polymer in nature, has a significant role to play in the move from ...
The stability and activity of the low redox potential Melanocarpus albomyces laccase (MaL) in variou...
Oxidative polymerization of two isolated lignans, secoisolariciresinol, and secoisolariciresinol dig...
Oxidative polymerization of two isolated lignans, secoisolariciresinol, and secoisolariciresinol dig...
Enzymatic polymerization of lignin is an environmentally-friendly and sustainable method that is inv...
The interaction between fungal laccases from Trametes basidiomycetes and different lignins has been ...
The ability of Streptomyces ipomoea laccase to polymerize secoisolariciresinol lignan and technical ...
Lignin is a highly abundant aromatic polymer in nature, but its controlled cleavage or cross-linking...
In this study the oxidative polymerization of different lignins, i.e. Flax Soda lignin, Spruce EMAL,...
The enzymatic oxidative polymerization of five technical lignins with different molecular properties...
Lignin preparations from kraft and sulfite pulping, steam explosion, and enzyme saccharification pro...
Lignin preparations from kraft and sulfite pulping, steam explosion, and enzyme saccharification pro...
The stability and reactivity of five different thermostable fungal laccases from the species Tramete...
Lignins are important biopolymers that can be converted into value-added materials by enzymatic trea...
Lignins are important biopolymers that can be converted into value-added materials by enzymatic trea...
Lignin, the second most abundant polymer in nature, has a significant role to play in the move from ...
The stability and activity of the low redox potential Melanocarpus albomyces laccase (MaL) in variou...
Oxidative polymerization of two isolated lignans, secoisolariciresinol, and secoisolariciresinol dig...
Oxidative polymerization of two isolated lignans, secoisolariciresinol, and secoisolariciresinol dig...
Enzymatic polymerization of lignin is an environmentally-friendly and sustainable method that is inv...
The interaction between fungal laccases from Trametes basidiomycetes and different lignins has been ...
The ability of Streptomyces ipomoea laccase to polymerize secoisolariciresinol lignan and technical ...
Lignin is a highly abundant aromatic polymer in nature, but its controlled cleavage or cross-linking...