Sustainability

Experience the Possible with Gii

Unlocking new markets with engineered carbon nanomaterials

Overview

A New Foundation for Innovation

The challenge with advanced devices is as much the materials as it is design. Ease of manufacturability, reproducibility and supply chain restrictions lock industries into trade-offs between performance, scalability and cost. Gii changes that.

Our proprietary material is fully reproducible and scalable. It replaces costly and challenging materials with a supply-stable, high-performance solution that works seamlessly with many existing manufacturing processes. By solving the weaknesses that hold various systems, Gii unlocks pathways into entirely new markets.

Setting a new standard

Why Gii?

High Performance at Thin Layers

Enables thinner, more efficient devices while maintaining reliable operation.

Reproducible and Scalable

Delivers consistent results from research stages through to full production.

Supply Secure

Produced without rare metals or critical raw inputs, ensuring stable access.

Cross-Market Impact

Supports diverse applications from energy and sensors to thermal systems.

Sustainable by Design

Made with carbon, electricity and polymers, reducing mined material reliance.

Microheaters

High temperature and flexibility have always been a trade-off. With Gii, microheaters can achieve sustained >500 °C operation in a fully printable, flexible format cutting costs and unlocking new designs across diagnostics, wearables and aerospace.

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Printed Batteries

Thin, flexible power sources need electrodes that perform at scale. Gii can replace fragile carbon inks with a reproducible, ultra-thin electrode layer delivering better surface quality, stable supply and scalable performance.

Explore printed batteries with Gii

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Ready to explore new markets with Gii?

From biosensors to power and heat, Gii can prove what’s possible when materials no longer limit design. Contact us to discuss your application or dive deeper into our solutions for sensing and related platforms.