Nanofluidics, from bulk to interfaces
arXiv:0909.0628 · doi:10.1039/B909366B
Abstract
Nanofluidics has emerged recently in the footsteps of microfluidics, following the quest of scale reduction inherent to nanotechnologies. By definition, nanofluidics explores transport phenomena of fluids at the nanometer scales. Why is the nanometer scale specific ? What fluid properties are probed at nanometric scales ? In other words, why 'nanofluidics' deserves its own brand name ? In this critical review, we will explore the vast manifold of length scales emerging for the fluid behavior at the nanoscales, as well as the associated mechanisms and corresponding applications. We will in particular explore the interplay between bulk and interface phenomena. The limit of validity of the continuum approaches will be discussed, as well as the numerous surface induced effects occuring at these scales, from hydrodynamic slippage to the various electro-kinetic phenomena originating from the couplings between hydrodynamics and electrostatics. An enlightening analogy between ion transport in nanochannels and transport in doped semi-conductors will be discussed.
review to be published in Chemical Society Reviews (25 pages)
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Cited by in corpus (220)
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- Low Mach Number Fluctuating Hydrodynamics of Diffusively Mixing Fluids
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- Controlling ion transport through nanopores: modeling transistor behavior
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- Antiresonant driven systems for particle manipulation
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- Two-dimensional non-linear hydrodynamics and nanofluidics
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- MicroMegascope based dynamic Surface Force Apparatus
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- Crystal growth in nano-confinement: Subcritical cavity formation and viscosity effects
- Acoustic Spectroscopy of the DNA in GHz range
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- Solvo-osmotic flow in electrolytic mixtures
- Interfacially driven transport in narrow channels
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- Revisiting, resolving and unifying the nanochannel-microchannel electrical resistance paradigm
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- Properties of thermocapillary fluids and symmetrization of motion equations
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- Projection Method for the Fluctuating Hydrodynamics Equations
- Nanoscale Surfactant Transport: Bridging Molecular and Continuum Models
- Revisiting the access conductance of a nanopore in a charged membrane
- Electrostatic Screening in Nanotubes: A Tubular Response Function Framework
- Hydrodynamic permeability of fluctuating porous membranes
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- Staggered Schemes for Fluctuating Hydrodynamics
- Competition between Born solvation, dielectric exclusion, and Coulomb attraction in spherical nanopores
- Computational modeling of biological nanopores
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- Immersed Boundary Projection Method for Navier Slip Boundaries
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- Optimized Setup for 2D Convection Experiments in Thin Liquid Films
- Electrical Conductivity of Nanoscale Hydrophobic Porous Media: Surface Charge Density and Heterogeneous Pore Structure
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