Individualize
Separate bundled CNT into discrete, high-aspect-ratio structures.

Conductive additive technology
Engineered CNT networks that support conductivity, structural stability, power, and longer battery life.

Why it matters
High-aspect-ratio carbon nanotubes can create long conductive pathways through an electrode. BDS formulations are designed to make that theoretical advantage usable in real battery manufacturing.
Review original performance data →The BDS process
Separate bundled CNT into discrete, high-aspect-ratio structures.
Maintain tube integrity and surface behavior through processing.
Tailor the dispersion for the target chemistry and process.
Create conductive pathways through battery active material.
Explore the technology
Technical FAQ
High-aspect-ratio CNT can create conductive pathways and mechanical reinforcement through active material, supporting power, charging, and cycle-life goals.
A formulated dispersion addresses bundling, wetting, dosing, and integration so manufacturers can use CNT performance more consistently in their process. While mitigating the safety concerns of raw CNT.
BDS develops Molecular Rebar formulations for lithium-ion and lead-acid applications, with testing and integration support matched to the customer system.
Yes. BDS supports 10 L jugs, 208 L drums, and 1,200 L totes for development through commercial-scale production.
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