Designed for high-energy and high power balanced applications
Designed for high-energy density and long endurance applications
Designed for high-energy density and long endurance applications
Designed for high-power density and fast drain applications
Designed for high-power density and fast drain applications
Designed for high-energy density and long endurance applications
Designed for high-energy and high power balanced applications
Designed for high-energy and high power balanced applications
High energy and high power packed in a robost and industry standard format
High energy and high power packed in a robost and industry standard format
Designed for high-power density and fast drain applications


Designed for high-energy density and long endurance applications


Designed for high-energy density and long endurance applications


Designed for high-power density and fast drain applications


Designed for high-energy density and long endurance applications


Designed for high-energy and high power balanced applications


Designed for high-energy and high power balanced applications


Designed for high-energy and high power balanced applications


High energy and high power packed in a robost and industry standard format


High energy and high power packed in a robost and industry standard format



We use machine learning-accelerated computation chemistry to map the world's largest database of battery-relevant molecules and their properties. This allows us to craft a custom solution for your unique challenge that's faster and more advanced than conventional approaches.
Al-enhanced Li-ion batteries containing Al-discovered electrolyte materials can achieve higher energy and power density, longer cycle life, and improved safety over conventional Li-ion batteries.