Quantum Copper provides high-performing, lightweight, and fire-retardant components for lithium-ion batteries. Their halogen-free ionic polymer-based separators, current collectors, and casings enhance battery fire safety.
Funding
$1.5M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
Founders
Product
Problem
Lithium-ion batteries pose a significant fire risk due to the flammable electrolytes they contain, potentially leading to thermal runaway and hazardous situations in electric vehicles, electronics, and other applications. Current fire safety measures often rely on halogenated materials, which raise environmental concerns due to their toxicity and persistence.
Solution
Quantum Copper provides halogen-free, fire-retardant components for lithium-ion batteries, enhancing safety without compromising performance or environmental responsibility. Their innovative materials are designed to prevent or mitigate thermal runaway events, reducing the risk of battery fires. Quantum Copper's product line includes separators, current collectors, and casings made from self-extinguishing ionic polymers, offering a comprehensive approach to battery fire protection. These lightweight components can be tailored for use in electric vehicles, consumer electronics, industrial equipment, and energy storage systems. By replacing traditional halogenated materials with environmentally friendly alternatives, Quantum Copper enables safer and more sustainable battery technology.
Target Audience
Quantum Copper's primary customers are battery manufacturers, electric vehicle companies, and electronics manufacturers seeking to improve the fire safety and environmental profile of their lithium-ion batteries.
Features
- Halogen-free ionic polymer formulation for effective fire retardancy
- Lightweight separators, current collectors, and casings for lithium-ion batteries
- Self-extinguishing properties to prevent thermal runaway propagation
- Customizable designs for various battery sizes and applications
- Enhanced thermal stability and resistance to high temperatures
- Environmentally friendly materials that meet stringent regulatory requirements