Solutions
Integration
Process
Technology
Materials
Advanced Material For Next-Generation Batteries!
Cancrie develops patented advanced materials engineered for life enhancement and performance improvements in batteries and capacitors. Built on 8+ years of hands-on research and innovation, our technology transforms waste into high-performance materials using sustainable and smarter processing methods.
Our solutions are designed for seamless integration in the batteries, using same process
MORE ABOUTWhy Choose Cancrie Nanocarbon for Batteries
Cancrie Nanocarbon is a patent granted high-performance carbon material designed to improve battery efficiency, life, and reliability. Using an advanced and greener process, it enhances active material bonding, high rate charge acceptance, and usable capacity—while enabling a more sustainable battery.
Our Mission Is To Engineer High-Performance, Biomass-Derived Nanocarbons
Our Mission Is To Engineer High-Performance, Biomass-Derived Nanocarbons At Cancrie, we convert renewable biomass into advanced nanocarbon materials that improve battery performance and reduce environmental impact. Our sustainable alternative to petroleum-based carbons delivers better energy density, faster charging, and longer battery life.
With patented technology and validated research, we simplify manufacturing, cut energy use by up to 89%, reduce emissions, and lower battery warranty returns.
Research & Validation
- Tested at ARAI, NABL and third party accredited labs
- Proven at industrial scale at more than 20 battery manufacturers
- Lacs of tubular, motor starting, eRickshaw and VRLA batteries with Cancrie Nanocarbon sold in last two years








Engineering High-Performance,
Sustainable Battery Materials
Our technology significantly outperforms conventional carbon black and enhances lithium-ion batteries by improving both energy density and power density — delivering stronger electrochemical performance across applications.
Powering Next-Generation Chemistries Across Applications
Cancrie’s biomass-derived nanocarbons are engineered to enhance performance across diverse battery chemistries and energy storage systems.