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End-of-life upcycling of polyurethanes using a room temperature, mechanism-based degradation
Ephraim G. Morado
, Mara L. Paterson
, Douglas G. Ivanoff
, Hsuan Chin Wang
, Alayna Johnson
, Darius Daniels
, Aoon Rizvi
,
Nancy R. Sottos
,
Steven C. Zimmerman
Center for Advanced Study
Materials Science and Engineering
Mechanical Science and Engineering
Aerospace Engineering
Materials Research Lab
Beckman Institute for Advanced Science and Technology
Chemistry
Research output
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peer-review
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Keyphrases
Acetal
33%
Adhesive Coatings
33%
Chain Breaks
33%
Chain Cleavage
100%
Chemical Modification
33%
Complete Degradation
33%
Cyclization
100%
Degradation Products
33%
Depolymerizing
33%
Glycerol
33%
Intramolecular Cyclization
33%
Ion Formation
33%
Low-energy Input
33%
Mechanism-based
100%
Organic Acids
33%
Oxocarbenium Ion
33%
Photochromic Coatings
33%
Polymer Backbone
33%
Polymeric Materials
33%
Polyurethane
100%
Polyurethane Elastomer
33%
Rapid Degradation
33%
Repurposing
33%
Room Temperature
100%
Synthetic Polymers
33%
Thermodynamics
33%
Upcycling
100%
Waste Streams
33%
Chemistry
Acetal
50%
Ambient Reaction Temperature
100%
Carboxylic Acid
50%
Degradation Product
50%
Elastomer
50%
Glycerol
50%
Intramolecular Cyclization
50%
Organic Acid
50%
Photochromism
50%
Material Science
Elastomer
50%
Glycerol
50%
Photochromics
50%
Polymer
50%
Polyurethane
100%
Synthetic Polymer
50%
Chemical Engineering
Carboxylic Acid
50%
Elastomer
50%
Organic Acid
50%
Polyurethane
100%