Developing the Next Generation of Battery Technologies

Innovation & Sustainability

Our development roadmap connects fundamental material science to manufacturable, safety-tested products — with sustainability considered at every stage.

The Journey from Lab to Market

Our Process

Research

Fundamental material science and cell chemistry exploration.

01
Pilot Scale

Transforming laboratory breakthroughs into manufacturable battery cells.

02
Qualification

Validating safety, quality and performance against global standards.

03
Production

Full-scale manufacturing at our Selangor facility.

04

Driving Next Generation Battery Technology

Aluminium-Ion Battery

Exploring aluminium-based battery chemistry for fast charging, cost efficiency, and a more abundant alternative to conventional battery materials.

Sodium-Ion Battery

Advancing sodium-ion technology as a scalable and cost-effective battery solution, leveraging abundant raw materials for diverse energy storage applications.

Solid-State Battery

Pursuing solid-state technology to enable safer, higher-energy batteries with the potential for greater performance, durability, and energy density.

MOF Battery

Investigating Metal-Organic Frameworks (MOFs) as advanced battery materials designed to improve ion transport, energy performance, and long-term battery efficiency.

Redox Flow Battery

Exploring redox flow technology for scalable, long-duration energy storage, particularly for renewable energy integration and large-scale applications.

Battery Recycling

Developing pathways for battery recycling and material recovery to extend resource efficiency, reduce waste, and support a more sustainable battery ecosystem.

Better Energy. Bigger Picture.

We consider more than what happens inside the cell: from how we source and manufacture to what happens at the end of its useful life.