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Degradable thermosets from sugar-derived dilactones
James J. Gallagher
,
Marc A. Hillmyer
,
Theresa M. Reineke
Chemistry (Twin Cities)
Research output
:
Contribution to journal
›
Article
›
peer-review
39
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Scopus citations
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Keyphrases
Dynamic Light Scattering
100%
Methyl Acrylate
100%
Hydrolytic Stability
100%
Dimethacrylate
100%
Dilactones
100%
Degradable Thermosets
100%
Alcohol
50%
Fourier Transform Infrared Spectroscopy (FT-IR)
50%
Commercially Available
50%
Isocyanate
50%
Aqueous Environment
50%
Polymerized
50%
Water-soluble
50%
Radical Polymerization
50%
Fractional Conversion
50%
Methacrylate
50%
Polymerization Conditions
50%
Tensile Test
50%
Sodium Hydroxide
50%
Acidic Conditions
50%
Solvent Casting
50%
Dicumyl Peroxide
50%
Neutral Condition
50%
Thermal Curing
50%
Sugar Derivatives
50%
Benzoyl Peroxide
50%
Spherical Morphology
50%
Dry State
50%
Precipitation Polymerization
50%
Dimethacrylate Monomers
50%
Low Dispersity
50%
Brittle Nature
50%
Methacrylate Group
50%
Scanning Electron Microscopy (SEM-EDS)
50%
Polymer Samples
50%
Rigid Monomer
50%
Chemistry
Methacrylate
100%
Methyl Methacrylate
66%
Photon Correlation Spectroscopy
66%
Polymerization
66%
Monomer
66%
hydrolytic
66%
Water Soluble
33%
Tin
33%
Radical Polimerization
33%
Fourier Transform Infrared Spectroscopy
33%
Plasticizer
33%
Acidic Condition
33%
Neutral Condition
33%
Peroxide
33%
Isocyanate
33%
Benzoyl Peroxide
33%
Microsphere
33%
Scanning Electron Microscopy
33%