Dynami develops a patented electrode production platform that creates lithium-ion batteries with significantly faster charging speeds and high capacity. This chemistry-agnostic technology utilizes less active material and is compatible with existing and future battery chemistries, including solid-state cells. The platform's lithium-ion highways improve transport, enabling high-power batteries without compromising energy density.
Funding
$6.3M 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.






+6Founders
Product
Problem
Current lithium-ion battery manufacturing faces a trade-off between energy and power density due to limitations in lithium-ion transport within the electrodes. This results in batteries that either charge slowly or have reduced capacity. Additionally, traditional battery manufacturing processes can be resource-intensive, relying on significant quantities of critical minerals.
Solution
Dynami provides a patented electrode production platform that enhances lithium-ion battery performance by creating "lithium-ion superhighways" within the electrode structure. This technology enables batteries to achieve charging speeds up to five times faster while maintaining high capacity. Dynami's approach is chemistry-agnostic, making it compatible with existing and future battery chemistries, including liquid electrolyte, polymer electrolyte, and solid-state batteries. The technology also reduces the reliance on critical minerals and complements existing battery design and production processes, offering an additive solution for improved battery performance.
Target Audience
Dynami's primary customers are battery manufacturers and automotive companies seeking to improve the charging speed, energy density, and sustainability of their lithium-ion batteries.
Features
- Patented electrode design featuring "lithium-ion superhighways" for enhanced ion transport
- 5X faster charging speeds compared to conventional lithium-ion batteries
- Chemistry-agnostic technology compatible with various battery types (liquid, polymer, solid-state)
- Reduced reliance on critical minerals in the electrode manufacturing process
- Additive manufacturing technology to accelerate development times
- Compatible with existing battery design and production processes
- Customizable electrode designs to meet specific battery performance requirements