The work described herein focuses on modulating the electric field within microelectrochemical devices for electrokinetic separations. Specifically, two new electrochemical approaches were investigated for forming electric field gradients which are useful for manipulating ion motion. The first method involved the integration and electrochemical reduction of the intercalation material Prussian blue within a microfluidic device. The results showed that the reduction of Prussian blue and concomitant ion intercalation from solution selectively formed an ion depletion zone and corresponding electric field gradient. This electric field gradient proved useful for the separation and enrichment of a charged fluorophore in solution, representing the ...
A new method for manipulating charged components of a supported bilayer lipid membrane (sBLM) has be...
A novel electrophoretic separation technique is presented, where continuous electrophoretic separati...
The ability to apply highly controlled electric fields within microfluidic devices is valuable as a ...
The work described herein focuses on modulating the electric field within microelectrochemical devic...
The separation of chemical mixtures into pure and purer constituents is essential to humankind. Howe...
The ability to generate stable, spatiotemporally controllable concentration gradients is critical fo...
textThe development and characterization of bipolar electrode (BPE) focusing is described. BPE focus...
Electrically-driven separation schemes, such as zone electrophoresis (ZE), isotachophoresis (ITP) an...
Developments in bipolar electrochemistry for the simultaneous separation and enrichment of charged s...
We report a method for the rapid and reversible generation of microscale pH gradients using a spatia...
This review surveys recent developments in the field of electrochemically generated gradients. The g...
Electrodialysis is an electric-field-mediated process separating ions exploiting selective propertie...
Finite numbers of ions are present in microfluidic devices. This leads to ion limiting effects in mi...
Previous work has demonstrated the simultaneous concentration and separation of proteins via a stabl...
A continuous flow microfluidic demixing process is realized. It utilizes high external electrical fi...
A new method for manipulating charged components of a supported bilayer lipid membrane (sBLM) has be...
A novel electrophoretic separation technique is presented, where continuous electrophoretic separati...
The ability to apply highly controlled electric fields within microfluidic devices is valuable as a ...
The work described herein focuses on modulating the electric field within microelectrochemical devic...
The separation of chemical mixtures into pure and purer constituents is essential to humankind. Howe...
The ability to generate stable, spatiotemporally controllable concentration gradients is critical fo...
textThe development and characterization of bipolar electrode (BPE) focusing is described. BPE focus...
Electrically-driven separation schemes, such as zone electrophoresis (ZE), isotachophoresis (ITP) an...
Developments in bipolar electrochemistry for the simultaneous separation and enrichment of charged s...
We report a method for the rapid and reversible generation of microscale pH gradients using a spatia...
This review surveys recent developments in the field of electrochemically generated gradients. The g...
Electrodialysis is an electric-field-mediated process separating ions exploiting selective propertie...
Finite numbers of ions are present in microfluidic devices. This leads to ion limiting effects in mi...
Previous work has demonstrated the simultaneous concentration and separation of proteins via a stabl...
A continuous flow microfluidic demixing process is realized. It utilizes high external electrical fi...
A new method for manipulating charged components of a supported bilayer lipid membrane (sBLM) has be...
A novel electrophoretic separation technique is presented, where continuous electrophoretic separati...
The ability to apply highly controlled electric fields within microfluidic devices is valuable as a ...