Uniform-potential nanopores develop axial EDL gradients from the driving field, generating tunable electrokinetic transport governed by asymmetry parameter α.
Impact of finite ion size, born energy difference and dielectric decrement on the electroosmosis of multivalent ionic mixtures in a nanotube
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Emergence of Transport Regimes from the Axial Field-Induced Interfacial Gradients in Uniform Surface Potential Nanopores
Uniform-potential nanopores develop axial EDL gradients from the driving field, generating tunable electrokinetic transport governed by asymmetry parameter α.