Macro photograph of an experimental electrochemical cell in a cleanroom, cool blue and electric teal laser highlights, sharp technical grid in background
Macro photograph of an experimental electrochemical cell in a cleanroom, cool blue and electric teal laser highlights, sharp technical grid in background

Rechargeable Aluminium-Air Cell

Developing India's first rechargeable Aluminium-Air battery systems. Engineered to bypass global lithium supply constraints while delivering high energy density for heavy transport and grid storage.

Electrochemical R&D

Bypassing Lithium Constraints

Target Specifications

Our active research facility validates rechargeable Aluminium-Air chemistry. By utilizing abundant domestic aluminum, we eliminate reliance on imported raw materials while achieving high volumetric energy density.

4x

Energy Density of Lithium-Ion

We focus on resolving the historical challenges of anode corrosion and electrolyte degradation, paving the way for sustainable, high-capacity stationary storage.

Zero

Active Carbon Emissions

Development Roadmap

From Lab to Scale

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Anode Optimization

Electrolyte Stability

Cell Prototyping

Field Deployment

Developing high-purity alloy formulations to minimize self-discharge and corrosion during idle states.

Formulating proprietary aqueous and non-aqueous systems to sustain stable charge-discharge cycles.

Assembling multi-layer pouch cells for rigorous thermal and mechanical stress validation.

Partnering with industrial OEMs to initiate stationary grid storage and heavy transport trials.

Collaborate on Next-Gen Energy

Join our R&D consortium. Work alongside our electrochemists to validate, test, and scale India's first rechargeable Aluminium-Air battery technology.