Abstract:
An electrochemical cell 100 for processing a sample fluid, has a body 102 with a flow path 106, the flow path having an inlet 110 and an outlet 112; a reference electrode 122, 144 in fluid communication with the flow path; a counter electrode 124, 146 in fluid communication with the flow path; a porous working electrode 128 in fluid communication with the flow path, the working electrode having a working electrode material; an electrical connection 126 for the working electrode in electrical contact with the working electrode; and a working electrode section 132 in the flow path. The working electrode is positioned inside the working electrode section. The working electrode section has a volume of from about 1 pL to about 1 µL.
Abstract:
A microfluidic processing system having a manifold with at least one inlet; at least one outlet; and a plurality of microfluidic chip holders. A fluidic jumper is coupled to one of the chip holders and at least two fluidic elements are coupled to at least one of the chip holders. The fluidic jumper controls the fluidic path through the system.
Abstract:
An electrochemical cell 100 for processing a sample fluid, has a body 102 with a flow path 106, the flow path having an inlet 110 and an outlet 112; a reference electrode 122, 144 in fluid communication with the flow path; a counter electrode 124, 146 in fluid communication with the flow path; a porous working electrode 128 in fluid communication with the flow path, the working electrode having a working electrode material; an electrical connection 126 for the working electrode in electrical contact with the working electrode; and a working electrode section 132 in the flow path. The working electrode is positioned inside the working electrode section. The working electrode section has a volume of from about 1 pL to about 1 µL.