Publication | Closed Access
Interlink between Abnormal Water Imbibition in Hydrophilic and Rapid Flow in Hydrophobic Nanochannels
19
Citations
59
References
2024
Year
EngineeringLiquid-liquid FlowFluid MechanicsCapillarity PhenomenonRapid FlowAbnormal Water ImbibitionFlow CellRapid Water FlowNanofluidicsHydrophobic NanochannelsLucas-washburn ModelBiomedical EngineeringMultiphase FlowNanoscale ExtensionMicrofluidicsBiofluid DynamicBiophysics
Nanoscale extension and refinement of the Lucas-Washburn model is presented with a detailed analysis of recent experimental data and extensive molecular dynamics simulations to investigate rapid water flow and water imbibition within nanocapillaries. Through a comparative analysis of capillary rise in hydrophilic nanochannels, an unexpected reversal of the anticipated trend, with an abnormal peak, of imbibition length below the size of 3 nm was discovered in hydrophilic nanochannels, surprisingly sharing the same physical origin as the well-known peak observed in flow rate within hydrophobic nanochannels. The extended imbibition model is applicable across diverse spatiotemporal scales and validated against simulation results and existing experimental data for both hydrophilic and hydrophobic nanochannels.
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