Axial forces at disk surfaces in a cylindrical nanopore

Mohammad Tajparast1, Mladen I Glavinović2

  • 1Departments of Civil Engineering and Applied Mechanics, McGill University, Montreal, PQ, Canada.

Biomedical Microdevices
|October 13, 2021
PubMed
Summary

Object translocation through nanopores is key for sensing applications. Simulations reveal electric fields and pore charges significantly influence axial forces, with dielectric forces surprisingly opposing Coulombic forces.

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