J. Galindo‐de‐la‐RosaA. Moreno-ZuriaVanessa Vallejo‐BecerraNoé ArjonaMinerva Guerra‐BalcázarJ. Ledesma‐GarcíaL.G. Arríaga
A novel stacked microfluidic fuel cell design comprising re-utilization of the anodic and cathodic solutions on the secondary cell is presented. This membraneless microfluidic fuel cell employs porous flow-through electrodes in a "V"-shape cell architecture. Enzymatic bioanodic arrays based on glucose oxidase were prepared by immobilizing the enzyme onto Toray carbon paper electrodes using tetrabutylammonium bromide, Nafion and glutaraldehyde. These electrodes were characterized through the scanning electrochemical microscope technique, evidencing a good electrochemical response due to the electronic transference observed with the presence of glucose over the entire of the electrode. Moreover, the evaluation of this microfluidic fuel cell with an air-breathing system in a double-cell mode showed a performance of 0.8951 mWcm-2 in a series connection (2.2822mAcm-2, 1.3607V), and 0.8427 mWcm-2 in a parallel connection (3.5786mAcm-2, 0.8164V).
Noé ArjonaAngélica Janeth Armenta-GonzálezS. RivasMinerva Guerra‐BalcázarJ. Ledesma‐GarcíaL.G. Arríaga
Deoashish PanjiaraHiralal Pramanik
Kamil S. SalloumJonathan D. Posner
Haroon KhanJin‐Ho ChoiAsad UllahYoung Ho KimGyu Man Kim
Maria José González-GuerreroJuan Pablo EsquivelDavid Sánchez-MolasPhilippe GodignonFrancesc Xavier MuñozF. Javier del CampoFabien GiroudShelley D. MinteerN. Sabaté