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Analysis of water and proton fluxes in ion-exchange polymer-metal composite (IPMC) actuators subjected to large external potentials
Eniko T. Enikov
, Geon S. Seo
Aerospace and Mechanical Engineering
BIO5, Institute of
Research output
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Contribution to journal
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Article
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peer-review
39
Scopus citations
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Dive into the research topics of 'Analysis of water and proton fluxes in ion-exchange polymer-metal composite (IPMC) actuators subjected to large external potentials'. Together they form a unique fingerprint.
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Engineering & Materials Science
Ion exchange
100%
Protons
86%
Fluxes
58%
Actuators
54%
Polymers
52%
Molecules
46%
Metals
46%
Composite materials
41%
Water
39%
Polymer matrix
29%
Stress relaxation
28%
Electric potential
24%
Chemical reactions
23%
Mass transfer
21%
Membranes
20%
Electrodes
18%
Boundary conditions
18%
Fabrication
17%
Testing
12%
Physics & Astronomy
actuators
58%
protons
46%
composite materials
43%
polymers
41%
water
40%
metals
36%
ions
33%
matrices
26%
stress relaxation
25%
electric potential
25%
molecules
25%
chemical reactions
21%
membranes
17%
boundary conditions
17%
electrodes
14%
fabrication
14%
simulation
9%
Chemical Compounds
Voltage
52%
Stress Relaxation
47%
Proton
46%
Composite Material
35%
Mass Transfer
29%
Molecule
25%
Simulation
22%
Diffusion
22%
Behavior as Electrode
18%