Bridging Interfacial Science and Industrial Electrification
Electro-Fluidics is a specialized consultancy and R&D platform dedicated to developing integrated fluidic flow cells for sustainable electrochemical technologies. We investigate electrode–electrolyte interfaces to overcome mass transport limitations and scale laboratory breakthroughs into industrial solutions.
Analyzing mass transport, shunt currents, and system losses in batteries and electrolyzers.
Expertise in Electrochemical Impedance Spectroscopy (EIS) for battery aging and biomolecule characterization.
Leveraging CAD design and 3D printing of customized flow cells and fluidic interfaces.
Custom fabricated membranes engineered to enhance micro-level mixing and ion transport.
Miniaturized electrochemical arrays for high-sensitivity diagnostic applications.
Transitioning from CAD concept to experimental validation in just days.
Optimizing aqueous Flow Batteries and micro capacitor arrays for grid stability.
Integrated Biosensors for real-time detection of metabolites in fluidic environments.
Solving mass transport limitations in CO2 Electrolyzers and Electrodialysis stacks.
Hand-picked hardware, flow cells, and sensors vetted by our engineering team to complement your electro-fluidic setups.
PDMS/Glass hybrid microchannel chips optimized for laminar flow and rapid species mixing.
View Supplier PageUltra-low flow rate liquid delivery system ideal for sensitive electrochemical sensor channels.
View Supplier PageStandardized lab-scale electrolyzer hardware engineered for low internal resistance and uniform flow distribution.
View Supplier PageCorrosion-resistant flow field plates designed for high-potential acid/alkaline water splitting.
View Supplier PageHigh-reproducibility carbon, gold, and platinum SPEs for rapid biosensor prototyping.
View Supplier PageMiniaturized reference electrodes designed specifically for tight integration into microfluidic channels.
View Supplier PageInteractive dimensional analysis tool for calculating Reynolds (Re), Péclet (Pe), and Damköhler (Da) numbers alongside binding kinetics profiles in microfluidic integrated biosensors.
🚀 Launch Interactive Calculator ↗Guidance and reference tools for interpreting Nyquist & Bode plots, equivalent circuit fitting, and charge transfer resistance analysis.
Read More →Technical papers and computational insights into concentration polarization, ion exchange selectivity, and profiled membrane hydrodynamics.
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