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Volumn 359, Issue 2, 2011, Pages 520-529
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Efficiently accounting for ion correlations in electrokinetic nanofluidic devices using density functional theory
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Author keywords
Density functional theory; Ion correlations; Ion size; Nanofluidic device
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Indexed keywords
CHARGE INVERSION;
COMPUTATIONALLY EFFICIENT;
COUNTERIONS;
DESIGN TOOL;
DEVICE DESIGN;
DOUBLE LAYER THEORY;
DOUBLE LAYERS;
ELECTRICAL DOUBLE LAYERS;
ELECTROKINETIC;
ELECTROOSMOTIC FLOW;
ION CONCENTRATIONS;
ION SIZE;
ION SIZE EFFECTS;
ION VELOCITY;
NANO-FLUIDIC DEVICES;
NANOFLUIDIC DEVICE;
NANOFLUIDIC SYSTEMS;
NON-LINEAR PHENOMENA;
POISSON-BOLTZMANN;
PREDICTIVE MODELS;
PRESSURE-DRIVEN;
SECOND LAYER;
SPATIAL DIMENSION;
DENSITY FUNCTIONAL THEORY;
ELECTRIC PROPERTIES;
ELECTRODYNAMICS;
ELECTROOSMOSIS;
EQUIPMENT;
NANOFLUIDICS;
IONS;
ELECTROLYTE;
ION;
ARTICLE;
CONTROLLED STUDY;
DENSITY FUNCTIONAL THEORY;
ELECTRICAL PARAMETERS;
ELECTROOSMOSIS;
KINETICS;
LIQUID;
MODEL;
NANOFLUIDICS;
POISSON DISTRIBUTION;
PRESSURE;
PRIORITY JOURNAL;
SPATIAL ORIENTATION;
SURFACE CHARGE;
SURFACE PROPERTY;
THERMODYNAMICS;
VELOCITY;
ELECTROCHEMISTRY;
IONS;
MICROFLUIDIC ANALYTICAL TECHNIQUES;
NANOTECHNOLOGY;
QUANTUM THEORY;
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EID: 79955811772
PISSN: 00219797
EISSN: None
Source Type: Journal
DOI: 10.1016/j.jcis.2011.03.088 Document Type: Article |
Times cited : (47)
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References (68)
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