Material Science
Polyester
100%
Enzymatic Polymerization
98%
Polymerization
45%
Lipase
30%
Polyamide
27%
Polyethylene Terephthalate
23%
Ionic Liquid
22%
Polyethylene
22%
Polyurethane
21%
Bio-Based Polymer
20%
Rheology
18%
Polymer
16%
Glass Transition Temperature
15%
Polyethylene Glycol
13%
Biocatalyst
12%
Elastomer
11%
Copolymerization
10%
Feedstock
9%
Polymer Brush
9%
Cellulose Acetate
9%
Elastic Moduli
9%
Deep Eutectic Solvent
9%
Comb Polymer
9%
Cellulose Films
9%
Polymer Chemistry
9%
Aluminum
9%
Ring Opening Polymerization
9%
Packaging Material
9%
Microplastics
9%
Nanocellulose
9%
Carbon Dioxide
9%
Lignin
9%
Thermal Property
7%
Biomaterial
6%
Amorphous Material
6%
Thermoset Plastics
5%
Keyphrases
Enzymatic Polymerization
29%
2,5-furandicarboxylic Acid
25%
Furan Polymers
23%
Enzymatic Synthesis
21%
Bioproducts
16%
Polyamide
15%
2,5-bis(hydroxymethyl)furan
13%
Copolyester
13%
Furan
13%
Dimethyl-2,5-furandicarboxylate
11%
Polymeric Materials
11%
Heteroaromatics
11%
Dimethyl
11%
Furanoate Polyesters
10%
Polyphthalamide
10%
Polyethylene Terephthalate
10%
Biopolymers
9%
Comb Brush
9%
End Life
9%
Greenway
9%
Unsaturated Polymer
9%
Diamine
9%
Enzymatic Transesterification
9%
Furan-based
9%
End-group Fidelity
9%
Semi-aromatic
9%
Urethane Bond
9%
Bottlebrush Polymers
9%
Heteroatom
9%
Diols
9%
Microplastics Removal
9%
Isomeric
9%
Vapor Phase Infiltration
9%
Hydroxymethyl
9%
Radiation Grafting
9%
Polyethylene Glycol Dimethyl Ether
9%
CO2-CH4 Separation
9%
Juncus Effusus
9%
Cellulose Foam
9%
Macromolecular Design
9%
Bio-based Solvents
9%
Polyester
8%
Poly(ethylene 2,5-furandicarboxylate)
6%
2,4-Diamino-1,3,5-triazine
6%
Saturated Polyester
6%
Functional Monomer
6%
Glass Transition Temperature
6%
Renewable Resources
6%
Semi-aromatic Polyamide
5%
Petroleum-based
5%
Chemistry
Enzymatic Polymerisation
40%
Molecular Mass
27%
Monomer
25%
Furan
18%
Polyamide
18%
Urethane
18%
Diol
15%
Muconate
13%
Muconic Acid
13%
Alkene
13%
diamino-1,3,5-triazine
9%
Eutectic Mixture
9%
Ring Opening Polymerisation
9%
Deep Eutectic Solvent
9%
Lactone
9%
Polyethylene Terephthalate
9%
Transamidation
9%
Transesterification
9%
Aluminum
9%
furan-2,5-dicarboxylic Acid
9%
Heteroatom
9%
Ethyl Ester
9%
Supramolecular Polymer
9%
Thymine
9%
Order Disorder Transition
9%
Hydroxyl
9%
Copolymerization
6%
Thermal Stability
6%
Glass Transition Temperature
6%
Polymerization
6%
Biocatalyst
5%
Carboxamide
5%