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Showing 1 to 4 of 4 for “"laminar flow-based"”.

  1. Laminar Flow-Based Electrochemical Microreactors

    … first the underlying fundamentals of multistream laminar flow are introduced: diffusional broadening, the position and shape of the interface between adjacent streams, and methods to induce advection. In addition, gravity-induced reorientation of the interface between two liquids of different …

    uiuc Repository record for Laminar Flow-Based Electrochemical Microreactors (opens in a new tab)

  2. Manufacturing all-polymer laminar flow-based fuel cells

    … technologies for two applications: (i) laminar flow-based fuel cells (LFFCs) and (ii) electrohydrodynamic-jet (e-jet) printing. Most LFFCs presented to date have been proof-of-concept unit cells that are not commercially viable for portable electronic applications. Transitioning from …

    uiuc Repository record for Manufacturing all-polymer laminar flow-based fuel cells (opens in a new tab)

  3. Laminar Flow-Based Microchemical Systems for Power Generation, Electrochemical Synthesis, and Biological Cell Studies

    Similarly in this thesis, multistream laminar flow is used in microfluidic systems for (1) biocatalytic synthesis of fine chemicals by microscale-enabled efficient regeneration of cofactors, as well as for (2) the study of intestinal stem cells on a surface that mimics their in vivo environment. In …

    uiuc Repository record for Laminar Flow-Based Microchemical Systems for Power Generation, Electrochemical Synthesis, and Biological Cell Studies (opens in a new tab)

  4. Microfluidic platforms for the investigation of fuel cell catalysts and electrodes

    … challenges (Chapter 2). At the microscale, the laminar nature of fluid flow eliminates the need for a physical barrier, such as a stationary membrane, while still allowing ionic transport between electrodes. This enables the development of many unique and innovative fuel cell designs. In …

    uiuc Repository record for Microfluidic platforms for the investigation of fuel cell catalysts and electrodes (opens in a new tab)