International audienceThe design of ω-amino-α-alkoxy-acetate as monomer enables to dramatically speed up the formation of polyamides catalyzed by the supported lipase B of Candida antarctica. Only 30 min are needed to reach 93% conversion whereas 240 h are necessary to observe the same level of conversion with a monomer devoided of an oxygen atom in position β relative to the electrophilic carbonyl group. Yields, Mn, Mw, DPn and PDI reach very good values for an enzymatic synthesis of polyamides
The extraordinary catalytic potential of enzymes and lipases in particular in polyesters synthesis h...
Candida antarctica lipase B (CALB) is an established biocatalyst for a variety of transesterificatio...
Candida antarctica lipase B (CALB) is an established biocatalyst for a variety of transesterificatio...
International audienceThe design of ω-amino-α-alkoxy-acetate as monomer enables to dramatically spee...
International audienceThe design of omega-amino-alpha-alkoxy-acetate as monomer enables to dramatica...
In the past decades enzymes have become part of the chemists’ toolbox and they have proven to be eff...
Polyamides are an important and versatile family of plastics commonly used both as construction plas...
The selective and specific features of enzymes have drawn an enormous amount of attention for use as...
The search for alternatives to oil-based monomers has sparked interest for scientists to focus on th...
A linear polyamidoamine oligomer was obtained by polymerization of ethyl acrylate and N-methyl-1,3-d...
The sustainable synthesis of polymers is a field with growing interest due to the need of modern soc...
The synthesis of poly-ß-alanine by a lipase catalyzed polycondensation reaction between ß-alanine es...
Enzymatic polymerization shows to be an advantageous approach in polymer chemistry, particularly in ...
Polyesters are known biodegradable materials that are frequently used for biomedical applications th...
Abstract: The lipase-catalyzed polycondensation of azelaic acid and glycerol is investigated accordi...
The extraordinary catalytic potential of enzymes and lipases in particular in polyesters synthesis h...
Candida antarctica lipase B (CALB) is an established biocatalyst for a variety of transesterificatio...
Candida antarctica lipase B (CALB) is an established biocatalyst for a variety of transesterificatio...
International audienceThe design of ω-amino-α-alkoxy-acetate as monomer enables to dramatically spee...
International audienceThe design of omega-amino-alpha-alkoxy-acetate as monomer enables to dramatica...
In the past decades enzymes have become part of the chemists’ toolbox and they have proven to be eff...
Polyamides are an important and versatile family of plastics commonly used both as construction plas...
The selective and specific features of enzymes have drawn an enormous amount of attention for use as...
The search for alternatives to oil-based monomers has sparked interest for scientists to focus on th...
A linear polyamidoamine oligomer was obtained by polymerization of ethyl acrylate and N-methyl-1,3-d...
The sustainable synthesis of polymers is a field with growing interest due to the need of modern soc...
The synthesis of poly-ß-alanine by a lipase catalyzed polycondensation reaction between ß-alanine es...
Enzymatic polymerization shows to be an advantageous approach in polymer chemistry, particularly in ...
Polyesters are known biodegradable materials that are frequently used for biomedical applications th...
Abstract: The lipase-catalyzed polycondensation of azelaic acid and glycerol is investigated accordi...
The extraordinary catalytic potential of enzymes and lipases in particular in polyesters synthesis h...
Candida antarctica lipase B (CALB) is an established biocatalyst for a variety of transesterificatio...
Candida antarctica lipase B (CALB) is an established biocatalyst for a variety of transesterificatio...