INIS
amides
100%
comparative evaluations
20%
compost
20%
depolymerization
60%
detection
20%
engineering
20%
enzymes
40%
esters
100%
hydrolysis
20%
increasing
100%
libraries
20%
nylon
20%
performance
40%
plastics
20%
polyamides
100%
polymers
60%
production
20%
recycling
80%
screening
20%
space
20%
tuning
20%
Keyphrases
Arthrobacter Ureafaciens
16%
Biodegradability
33%
Catalytic Depolymerization
33%
Chemical Recycling
16%
Cutinase
16%
Degradation Products
16%
Depolymerization
16%
Engineering Strategies
16%
Enzymatic Recycling
16%
Enzyme Engineering
16%
Global Production
16%
Hydrolysis
16%
In Silico Analysis
16%
Library Screening
16%
Low Activity
16%
Mechanical Recycling
16%
Nylon
16%
Nylonase
100%
Plastic Crisis
16%
Polyamide
83%
Polyesteramide
100%
Recycling Rate
33%
Sequence Identity
16%
Sequence Spaces
16%
Strategies to Overcome
16%
Chemistry
Biodegradability
40%
Carboxamide
100%
Degradation Product
20%
Depolymerization
60%
Enzymatic Hydrolysis
20%
Oligomer
20%
Polyamide
100%
Chemical Engineering
Amide
100%
Oligomer
20%
Polyamide
100%
Polyester
100%
Biochemistry, Genetics and Molecular Biology
Biodegradability
66%
Cutinase
33%
Depolymerization
100%
Enzymatic Hydrolysis
33%
Enzyme
33%
Enzyme Engineering
33%
Pharmacology, Toxicology and Pharmaceutical Science
Carboxamide
100%
Cutinase
20%
Oligomer
20%
Polyamide
100%