Thermoplastics have become attractive alternatives to glass/quartz for microfluidics, but the realization of thermoplastic nanofluidic devices has been slow in spite of the rather simple fabrication techniques that can be used to produce these devices. This slow transition has in part been attributed to insufficient understanding of surface charge effects on the transport properties of single molecules through thermoplastic nanochannels. We report the surface modification of thermoplastic nanochannels and an assessment of the associated surface charge density, zeta potential and electroosmotic flow (EOF). Mixed-scale fluidic networks were fabricated in poly(methylmethacrylate), PMMA. Oxygen plasma was used to generate surface-confined carbo...
The nanoscale represents a fundamentally new regime for lab-on-a-chip type fluidic systems, because ...
Because of the unique properties that arise when the column size is comparable to either the length ...
Nanofludic devices provide a great platform for single molecular analysis. The unique phenomena in n...
We report the surface modification of thermoplastic nanochannels and the evaluation of the surface c...
We report the use of thermoplastic nanochannels for electrophoresis. Studies concerning the surface ...
Mixed-scale nano-and microfluidic networks were fabricated in thermoplastics using simple and robust...
Electroosmotic flow control in microfluidic devices is an important and challenging problem, as elec...
Today, the growing and aging population, and the rise of new global threats on human health puts an ...
Covalent surface modification techniques, in particular surface oxidation procedures, have been empl...
Using surface micromachining technology, we fabricated nanofluidic devices with channels down to 10̂...
Over the past decade, thermoplastics have been used as alternative substrates to glass and Si for mi...
Covalent surface modification techniques, in particular surface oxidation procedures, have been empl...
A novel method based on plasma etching was proposed for monolithically integrating planar nanochanne...
Our work focuses on the development of simpler and effective production of nanofl uidic devices for ...
Nanofluidics is an emerging field with many science and engineering applications. The physics of mat...
The nanoscale represents a fundamentally new regime for lab-on-a-chip type fluidic systems, because ...
Because of the unique properties that arise when the column size is comparable to either the length ...
Nanofludic devices provide a great platform for single molecular analysis. The unique phenomena in n...
We report the surface modification of thermoplastic nanochannels and the evaluation of the surface c...
We report the use of thermoplastic nanochannels for electrophoresis. Studies concerning the surface ...
Mixed-scale nano-and microfluidic networks were fabricated in thermoplastics using simple and robust...
Electroosmotic flow control in microfluidic devices is an important and challenging problem, as elec...
Today, the growing and aging population, and the rise of new global threats on human health puts an ...
Covalent surface modification techniques, in particular surface oxidation procedures, have been empl...
Using surface micromachining technology, we fabricated nanofluidic devices with channels down to 10̂...
Over the past decade, thermoplastics have been used as alternative substrates to glass and Si for mi...
Covalent surface modification techniques, in particular surface oxidation procedures, have been empl...
A novel method based on plasma etching was proposed for monolithically integrating planar nanochanne...
Our work focuses on the development of simpler and effective production of nanofl uidic devices for ...
Nanofluidics is an emerging field with many science and engineering applications. The physics of mat...
The nanoscale represents a fundamentally new regime for lab-on-a-chip type fluidic systems, because ...
Because of the unique properties that arise when the column size is comparable to either the length ...
Nanofludic devices provide a great platform for single molecular analysis. The unique phenomena in n...