Enzymatic synthesis of cross-linkable polyesters from renewable resources.
Explore this paper's citation graph
Summary
Enzymatic synthesis of a new class of cross-linkable polyesters has been achieved using Candida antarctica lipase as catalyst in the presence of unsaturated higher fatty acids, yielding cross-linked transparent film.
- Type
- article
- Published
- 2001-01-01
- Cited by
- 62
- References
- 0
- OpenAlex
- https://openalex.org/W2011420341
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:23791005
Keywords
Polyester, Candida antarctica, Lipase, Catalysis, Organic chemistry
References
No references recorded for this paper.
Cited by
- Poly (ricinoleic acid) based novel thermosetting elastomer.
- Enzyme-Catalyzed Synthesis of Unsaturated Aliphatic Polyesters Based on Green Monomers from Renewable Resources
- Enzyme catalyzed synthesis of polyesters
- Lipase-catalyzed polyester synthesis – A green polymer chemistry
- Enzymatic Polymerization for Precision Polymer Synthesis
- Cadmium Incorporated Oil Based Bioactive Polymers: Synthesis, Characterization and Physico-chemical Studies
- Cd and Zn-incorporated polyesteramide coating materials from seed oil—A renewable resource
- Structure–properties relationship of fatty acid-based thermoplastics as synthetic polymer mimics
- Synthesis of Sunflower Oil Based Bimetallic Polymer and Its Antifungal Studies
- Fully Biobased Unsaturated Aliphatic Polyesters from Renewable Resources: Enzymatic Synthesis, Characterization, and Properties
- Lipase-catalyzed synthesis of aliphatic polyesters and properties characterization
- Biodegradable polymers and their layered silicate nanocomposites: In greening the 21st century materials world
- Preparation and Characterization of Environmental-Friendly Epoxy Resins/Clay Nanocomposites
- High-Performance Immobilized Lipase Catalyst for Polyester Synthesis
- Síntese de materiais poliméricos contendo moléculas bioativas e materiais de fontes renováveis via catálise enzimática
- A biocatalytic approach towards sustainable furanic–aliphatic polyesters
- Enzymatic ring-opening polymerization and polycondensation for the green synthesis of polyesters†
- Enzymatic synthesis of biobased polyesters using 2,5-bis(hydroxymethyl)furan as the building block.
- Enzymes as Green Catalysts for Precision Macromolecular Synthesis.
- Development of High-Performance Bio-Based Polymers from Plant Oils
Related papers
- Chemoenzymatic synthesis of enantiopure 1-phenyl-2-haloethanols and their esters
- Kinetic Study of Candida antarctica Lipase B Immobilization Using Poly(Methyl Methacrylate) Nanoparticles Obtained by Miniemulsion Polymerization as Support
- Highly enantioselective enzymatic resolution of cis-fused octalols mediated by Candida antarctica lipase (Novozym 435)
- Effective resolution of 1-phenyl ethanol by Candida antarctica lipase B catalysed acylation with vinyl acetate in protic ionic liquids (PILs)
- One Biocatalyst–Many Applications: The Use of Candida Antarctica B-Lipase in Organic Synthesis
- A study on the synthesis of various polyesters from glycerol
- Fully Enzymatic Resolution of Chiral Amines: Acylation and Deacylation in the Presence of Candida antarctica Lipase B
- Enzyme-catalyzed Polyester Synthesis
- Pickering Emulsion as an Efficient Platform for Enzymatic Reactions without Stirring