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Hydrolysis and blistering of cyanate ester networks
Leo J. Kasehagen
, Idelette Haury
, Christopher W. Macosko
, David A. Shimp
Chemical Engineering and Materials Science
Research output
:
Contribution to journal
›
Article
›
peer-review
50
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Scopus citations
Overview
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Engineering
Cyanate Ester
100%
Mols
50%
Low-Temperature
50%
Homopolymer
50%
Crosslinks
50%
Hydrolysis Reaction
50%
Change Rate
50%
Monomer
50%
Activation Energy
50%
Bisphenol
50%
Delamination
50%
Chemistry
Hydrolysis
100%
Cyanate Ester
100%
Enzymatic Hydrolysis
100%
Chemical Kinetics Characteristics
66%
Reaction Activation Energy
33%
Single Monomer Polymer
33%
Bisphenol A
33%
Differential Scanning Calorimetry
33%
Monomer
33%
Delamination
33%
Keyphrases
Blister
100%
Cyanate Ester
100%
Low Temperature
20%
Heat Transfer
20%
Moisture
20%
Excess Water
20%
Rate of Change
20%
Delamination
20%
First-order
20%
Activation Energy
20%
Differential Scanning Calorimetry
20%
Indirect Measurement
20%
Homopolymer
20%
Water Loss
20%
Bisphenol A
20%
Hydrolysis Reaction
20%
Isopropylidene
20%
Soldering
20%
Glass Reinforced
20%
Reinforced Laminates
20%
Material Science
Enzymatic Hydrolysis
100%
Activation Energy
33%
Differential Scanning Calorimetry
33%
Delamination
33%