Review: static and dynamic behavior of liquids inside carbon nanotubes
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Microscale acoustofluidics: Microfluidics driven via acoustics and ultrasonicsMolecular momentum transport at fluid-solid interfaces in MEMS/NEMS: a reviewA novel far-field nanoscopic velocimetry for nanofluidics.Confined water inside single-walled carbon nanotubes: global phase diagram and effect of finite length.Ionic liquid flow along the carbon nanotube with DC electric field.Water filling and electric field-induced enhancement in the mechanical property of carbon nanotubesThe capillarity of nanometric water menisci confined inside closed-geometry viral cages.Transport properties and induced voltage in the structure of water-filled single-walled boron-nitrogen nanotubesDynamics of carbon nanotube tipped atomic force microscopy in liquid.Melt infiltration: an emerging technique for the preparation of novel functional nanostructured materials.Chemical reactions confined within carbon nanotubes.Flow-induced dynamics of carbon nanotubes.Simulation of water impregnation through vertically aligned CNT forests using a molecular dynamics method.Neutron scattering observation of quasi-free rotations of water confined in carbon nanotubes.Ordered and disordered packing of coronene molecules in carbon nanotubes.Nanowire liquid pumps.Effects of electric field on confined electrolyte in a hexagonal mesoporous silica.Ion size effects on the osmotic pressure and electrocapillarity in a nanoslit: Symmetric and asymmetric ion sizes.Direct imaging of carbon nanotubes spontaneously filled with solvent.Spatial frequency heterodyne imaging of aqueous phase transitions inside multi-walled carbon nanotubes.Meniscus formation in a capillary and the role of contact line friction.Water flow enhancement in hydrophilic nanochannels.3D flexible water channel: stretchability of nanoscale water bridge.Salting out in organic solvents: a new route to carbon nanotube bundle engineering.Electrocapillarity of an electrolyte solution in a nanoslit with overlapped electric double layer: continuum approach.The Importance of Dehydration in Determining Ion Transport in Narrow PoresNano-morphology of a polymer electrolyte fuel cell catalyst layer—imaging, reconstruction and analysis
P2860
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P2860
Review: static and dynamic behavior of liquids inside carbon nanotubes
description
article
@en
wetenschappelijk artikel
@nl
наукова стаття, опублікована у квітні 2008
@uk
name
Review: static and dynamic behavior of liquids inside carbon nanotubes
@en
Review: static and dynamic behavior of liquids inside carbon nanotubes
@nl
type
label
Review: static and dynamic behavior of liquids inside carbon nanotubes
@en
Review: static and dynamic behavior of liquids inside carbon nanotubes
@nl
prefLabel
Review: static and dynamic behavior of liquids inside carbon nanotubes
@en
Review: static and dynamic behavior of liquids inside carbon nanotubes
@nl
P1476
Review: static and dynamic behavior of liquids inside carbon nanotubes
@en
P2093
Davide Mattia
P2888
P304
P356
10.1007/S10404-008-0293-5
P50
P577
2008-04-17T00:00:00Z