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Linear Viscoelasticity and Cation Conduction in Polyurethane Sulfonate Ionomers with Ions in the Soft Segment-Single Phase Systems
Shih Wa Wang,
Ralph H. Colby
Materials Science and Engineering
Materials Research Institute (MRI)
Research output
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Contribution to journal
›
Article
›
peer-review
17
Scopus citations
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Dive into the research topics of 'Linear Viscoelasticity and Cation Conduction in Polyurethane Sulfonate Ionomers with Ions in the Soft Segment-Single Phase Systems'. Together they form a unique fingerprint.
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Engineering & Materials Science
Ionomers
100%
Positive ions
86%
Viscoelasticity
85%
Polyurethanes
74%
Ions
63%
Dielectric relaxation
51%
Polyethylene oxides
45%
Anelastic relaxation
36%
Spectroscopy
22%
Sodium
20%
Ionic conductivity
14%
Polymers
14%
Chain length
14%
Activation energy
10%
Relaxation
9%
Polarization
9%
Temperature
7%
Electrodes
7%
Chemical Compounds
Ionomer
78%
Sulfonate
64%
Dielectric Relaxation
42%
Cation
40%
Ion
27%
Mechanical Relaxation
17%
Spectroscopy
14%
Sodium Atom
14%
Ion Mobility
13%
Diisocyanate
12%
Urethane
12%
Dipole
11%
Ionic Conductivity
10%
Counterion
10%
Compound Mobility
8%
Polarization
8%
Reaction Activation Energy
7%
Length
6%
Behavior as Electrode
5%
Time
4%