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Electrophoresis|January 27, 2004
Zeta potential of microfluidic substrates: 1. Theory, experimental techniques, and effects on separationsBrian J Kirby, Ernest F HasselbrinkElectrophoresis|January 27, 2004
Zeta potential of microfluidic substrates: 2. Data for polymersBrian J Kirby, Ernest F HasselbrinkJournal of Chromatography. A|December 25, 2002
Voltage-addressable on/off microvalves for high-pressure microchip separationsBrian J Kirby, Timothy J Shepodd, Ernest F HasselbrinkJournal of Colloid and Interface Science|March 23, 2005
Timescales for relaxation to Boltzmann equilibrium in nanoporesHo Sang Kwak, Ernest F HasselbrinkBiomedical Microdevices|May 25, 2007
Biomolecular motor-driven microtubule translocation in the presence of shear flow: modeling microtubule deflection due to shearTaesung Kim, Edgar Meyhöfer, Ernest F HasselbrinkAnalytical Chemistry|August 16, 2005
Rapidly prototyped three-dimensional nanofluidic channel networks in glass substratesKevin Ke, Ernest F Hasselbrink, Alan J HuntAnalytical Chemistry|July 18, 2006
Electrokinetic protein preconcentration using a simple glass/poly(dimethylsiloxane) microfluidic chipSun Min Kim, Mark A Burns, Ernest F HasselbrinkAnalytical Chemistry|October 17, 2002
High-pressure microfluidic control in lab-on-a-chip devices using mobile polymer monolithsErnest F Hasselbrink, Timothy J Shepodd, Jason E RehmBiophysical Journal|February 1, 2008
Nanomechanical model of microtubule translocation in the presence of electric fieldsTaesung Kim, Ming-Tse Kao, Ernest F Hasselbrink, et al.Nano Letters|January 11, 2007
Active alignment of microtubules with electric fieldsTaesung Kim, Ming-Tse Kao, Ernest F Hasselbrink, et al.Pageof 13