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Collective dehydration of ions in nano-pores
M. P. Heuberger
, Z. Zachariah
, N. D. Spencer
,
R. M. Espinosa-Marzal
Civil and Environmental Engineering
National Center for Supercomputing Applications (NCSA)
Materials Science and Engineering
Carl R. Woese Institute for Genomic Biology
Research output
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peer-review
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Engineering
Nanopore
100%
Hydrated Ion
100%
Nanometre
66%
Design Criterion
33%
External Load
33%
Structural Element
33%
Salt Concentration
33%
Electrical Double Layer
33%
Nanofiltration Membrane
33%
Information Gain
33%
Electrochemical Capacitor
33%
Water Treatment
33%
Porous Electrode
33%
Material Science
Nanopore
100%
Film Thickness
50%
Capacitor
50%
Potassium Ion
50%
Mica Surface
50%
Nanofiltration Membrane
50%
Chemical Engineering
Nanofiltration
100%
Water Treatment
100%
Film
100%
Earth and Planetary Sciences
Electrochemical Capacitor
100%
Food Science
Potassium Ion
100%
Keyphrases
Ion Dehydration
66%