Microfluidic electrochemical device and process for chemical imaging and electrochemical analysis at the electrode-liquid interface in-situ
A microfluidic electrochemical device and process are detailed that provide chemical imaging and electrochemical analysis under vacuum at the surface of the electrode-sample or electrode-liquid interface in-situ. The electrochemical device allows investigation of various surface layers including diffuse layers at selected depths populated with, e.g., adsorbed molecules in which chemical transformation in electrolyte solutions occurs.
1. An electrochemical device for combined electrochemical analysis and chemical imaging of analytes at an electrode-liquid sample interface in situ under vacuum, the device comprising:
an electrochemical microfluidic flow cell;
a support membrane within the cell, the membrane defining at least one detection aperture, the aperture providing an opening through which probe beams can be delivered to an interior of the cell;
at least one wall of the cell aligned opposing the aperture; and
a pair of electrodes within the cell, one of the electrodes upon the one wall and aligned opposing the aperture such that said one of the electrodes is within the path of the probe beam.
2. The electrochemical device of claim 1 wherein at least one of the pair of electrodes resides on the one wall of the cell.
3. The electrochemical device of claim 1 wherein the probe beam is aligned in a direction through the aperture and toward the one of the electrodes.
4. The electrochemical device of claim 1 further comprising a via extending through the one wall and connecting with the one electrode.
5. The electrochemical device of claim 1 wherein the pair of electrodes both reside on the one wall of the cell.
6. The electrochemical device of claim 5 further comprising individual vias extending through the one wall and connecting respectively with each electrode.
7. The electrochemical device of claim 5 wherein at least one of the pair of electrodes is aligned opposing the one detection aperture.
8. The electrochemical device of claim 7 wherein another of the pair of electrodes resides adjacent the one of the pair of electrodes along the wall.
9. The electrochemical device of claim 5 wherein one of the electrodes' surfaces is larger than another of the electrodes' surfaces.