1 research outputs found
In-Channel Electrochemical Detection in the Middle of Microchannel under High Electric Field
We propose a new method for performing in-channel electrochemical
detection under a high electric field using a polyelectrolytic gel
salt bridge (PGSB) integrated in the middle of the electrophoretic
separation channel. The finely tuned placement of a gold working electrode
and the PGSB on an equipotential surface in the microchannel provided
highly sensitive electrochemical detection without any deterioration
in the separation efficiency or interference of the applied electric
field. To assess the working principle, the open circuit potentials
between gold working electrodes and the reference electrode at varying
distances were measured in the microchannel under electrophoretic
fields using an electrically isolated potentiostat. In addition, āin-channelā
cyclic voltammetry confirmed the feasibility of electrochemical detection
under various strengths of electric fields (ā¼400 V/cm). Effective
separation on a microchip equipped with a PGSB under high electric
fields was demonstrated for the electrochemical detection of biological
compounds such as dopamine and catechol. The proposed āin-channelā
electrochemical detection under a high electric field enables wider
electrochemical detection applications in microchip electrophoresis