DexMat produces Galvorn, a flexible carbon nanomaterial that combines high conductivity, strength, and corrosion resistance, making it suitable for diverse applications such as e-textiles, automotive, and aerospace. This technology addresses the environmental impact of traditional materials by providing a lightweight alternative that reduces greenhouse gas emissions in industrial processes.
Funding
$3M 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.
SVFounders
Product
Problem
Many industries rely on materials that are heavy, prone to corrosion, and contribute significantly to greenhouse gas emissions during production and use. Traditional materials often lack the combination of strength, flexibility, and conductivity needed for advanced applications.
Solution
DexMat produces Galvorn, a high-performance carbon nanomaterial that offers a unique combination of strength, light weight, conductivity, corrosion resistance, and flame resistance. Galvorn can be engineered into fibers, yarns, fabrics, and films to meet the needs of diverse applications. By embodying carbon into a flexible and versatile material, Galvorn provides a lightweight alternative to traditional materials, reducing greenhouse gas emissions in industrial processes and enabling innovation across multiple sectors.
Target Audience
DexMat's primary customers include manufacturers in e-textiles, sporting goods, automotive, aerospace, defense, and energy transmission industries seeking advanced materials with superior performance characteristics.
Features
- High strength-to-weight ratio for structural applications
- High electrical and thermal conductivity for energy transmission and thermal management
- Excellent corrosion resistance for use in harsh environments
- Flame resistance for enhanced safety
- Biocompatibility for medical applications
- Available in various forms, including fibers, yarns, fabrics, and films
- Can be integrated into composites for enhanced performance