Electrologic

Materials at the
electrode–ion
interface.

Electrologic develops electrode and ion-exchange membrane materials for capacitive deionization, and electrode materials for battery applications — two markets built on the same underlying discipline: engineering how ions move at a charged surface.

Capacitive deionizationIon-exchange membranesBattery electrodesMaterials R&D
Materials research & development stage — pre-product
Applied voltage + + + Electrode Feed channel Electrode CEM AEM

CEM / AEM = cation- / anion-exchange membrane. Ions migrate under an applied field and are held at the electrode or membrane until the cell is regenerated.

Two markets, one discipline

Every electrochemical device is only as good as its electrode-ion interface.

Capacitive deionization removes dissolved ions from water by holding them at a charged, high-surface-area electrode; a battery stores energy by moving ions between two electrodes through an electrolyte. Different outcomes, same underlying problem — get more ions to the electrode surface, hold them there efficiently, and do it again for millions of cycles without the material breaking down.

Electrologic works on that shared problem from both directions: electrode and membrane materials for CDI, and electrode materials for battery cells.

Product lines
Where we are

Early-stage. Deliberately.

Electrologic is currently in the materials research and development phase across both product lines, validating electrode and membrane formulations before committing to first production runs.

ConceptMaterials R&DPilot batchesProduction
Electrologic is in active research and development. The materials and capabilities described on this site are under development and are not yet commercially available.

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