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The Journal of Chemical Physics|January 3, 2020
Voltage-driven translocation: Defining a capture radiusLe Qiao, Maxime Ignacio, Gary W SlaterPhysical Chemistry Chemical Physics : PCCP|January 5, 2021
An efficient kinetic Monte Carlo to study analyte capture by a nanopore: transients, boundary conditions and time-dependent fieldsLe Qiao, Maxime Ignacio, Gary W SlaterThe Journal of Chemical Physics|April 17, 2020
Capture of rod-like molecules by a nanopore: Defining an "orientational capture radius"Le Qiao, Gary W SlaterPhysical Chemistry Chemical Physics : PCCP|March 4, 2022
Capture and translocation of a rod-like molecule by a nanopore: orientation, charge distribution and hydrodynamicsLe Qiao, Gary W SlaterNano Letters|January 27, 2023
Ratcheting Charged Polymers through Symmetric Nanopores Using Pulsed Fields: Designing a Low Pass Filter for Concentrating PolyelectrolytesLe Qiao, Kai Szuttor, Christian Holm, et al.Journal of the Royal Society, Interface|November 1, 2016
Physical confinement signals regulate the organization of stem cells in three dimensionsSebastian V Hadjiantoniou, David Sean, Maxime Ignacio, et al.Electrophoresis|July 13, 2002
A theoretical study of an empirical function for the mobility of DNA fragments in sieving matricesGary W SlaterElectrophoresis|October 6, 2010
Physical interpretation of the L(r) parameter in the theory for the gel electrophoresis of partially denatured DNADavid Sean, Gary W SlaterPhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|December 31, 2008
Polymer deformation in Brownian ratchets: theory and molecular dynamics simulationsMartin Kenward, Gary W SlaterPageof 9