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Showing 1 to 6 of 6 for “"Nanofluidic Transport"”.

  1. Multiscale computational modeling of nanofluidic transport

    … mechanisms of intrinsic molecular interaction in nanofluidic applications. We performed ab initio molecular dynamics to study the nanoscale solvation behavior of selected ions on finite graphene models. The degree of charge transfer between ion and water, and the effect of defects on dynamics and …

    mit Repository record for Multiscale computational modeling of nanofluidic transport (opens in a new tab)

  2. The development of nanofluidic platforms for biomolecular separations

    … these separations and purifications in smaller, nanofluidic based systems. This dissertation presents research conducted to explore how fluids, electrical fields, and dissolved analytes of interest (including biomolecules) behave in nanoconfined systems. It presents the recent advances in …

    unm Repository record for The development of nanofluidic platforms for biomolecular separations (opens in a new tab)

  3. A coarse grained transport model for nanofluidic systems

    … these models are not suited to describe transport phenomena involving explicit walls in nano-channels. Previous coarse-grained models for confined fluids are only optimized to match the structure of the confined fluid. Here we introduce a complete CG transport model for a single component …

    uiuc Repository record for A coarse grained transport model for nanofluidic systems (opens in a new tab)

  4. Macroscopic graphene membranes with tunable nanopores for highly selective mass separation

    … to separate water from salts, where selective transport of species arises from their solubility and diffusivity in polymer phase. Despite the remarkable progress in materials, structure, and separation process over the past few decades, today's membranes are subjected to intrinsic challenges …

    mit Repository record for Macroscopic graphene membranes with tunable nanopores for highly selective mass separation (opens in a new tab)

  5. Science of Nanofluidics and Energy Conversion

    The emerging subject of nanofluidics, where solids and fluids interact closely at the nanoscale, has exhibited radically different from their macroscopic counterparts (and sometimes counterintuitive), and yet relatively less explored. On the other hand, the resulting unique properties may …

    columbia-diss Repository record for Science of Nanofluidics and Energy Conversion (opens in a new tab)