Battery Enhancing Technologies

Revolutionary Technologies Require a Strong Scientific Foundation

Crystal Control Technology®

Doubled Battery Life, Tripled Energy Throughput

Our core Crystal Control Technology® (CCT®) is the foundation of all our technological advancements. CCT manipulates the crystalization process in batteries, resulting in significantly prolonged battery life, higher energy output, and more efficient charging — bringing significant benefits and cost savings for end-users.

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Longer life-span

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More energy throughput

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Reduced CO2 Emmisions

Battery Formation

Batteries Much More Suited for Energy Storage Applications

One of the most essential steps in battery production is the formation process. The application of our formation technology shortens the overall formation time and energy required. The active materials form better, increasing the surface area of the negative active material and accumulating more open pores on the positive active material. As a result, batteries obtain a higher charge acceptance and better utilization of the active masses, enhancing the performance and cycle-life of formed batteries. Additionally, this results in substantial cost and energy savings for manufacturers.

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Longer cycle life

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Higher battery capacity

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Less energy during formation

Battery Formation

Batteries much more Suited for Energy Storage Applications

One of the most essential steps in battery production is the formation process. The application of our formation technology shortens the overall formation time and energy required. The active materials form better, increasing the surface area of the negative active material and accumulating more open pores on the positive active material. As a result, batteries obtain a higher charge acceptance and better utilization of the active masses, enhancing the performance and cycle-life of formed batteries. Additionally, this creates substantial cost and energy savings for manufacturers.

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Longer cycle life

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Higher battery capacity

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Less energy during formation

Battery Materials

New Unique Battery Materials

A new and unique family of materials has been developed to extend battery life and energy output. The interaction between electrolyte and the active mass surface and the ionic mobility in the electric double layer is optimized. The materials are non-toxic and work immediately after being applied to the batteries. Paired with our other technologies, create an exponential effect on benefits and savings for end-users.

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More capacity during use

Battery Recovery

Restoring Aged Batteries Back to Initial Capacity

Our groundbreaking recovery procedure recovers premature capacity loss and can fully restore batteries up to 100% of their original capacity. This is done without opening or taking apart the batteries; they can be recovered on-site. As a result, batteries can live substantially longer while allowing end-users a full second use of the same batteries.

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of original capacity

Battery Recovery

Restoring Dead Batteries Back to Initial Capacity

Our groundbreaking recovery procedure of batteries recovers capacity loss and can fully restore batteries to 100% of their original capacity. This is done without opening or taking apart the batteries and can additionally be recovered on-site. As a result, batteries can live substantially longer while allowing end-users a full second use of the same batteries.

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of original capacity

Other Battery Chemistries

Moving Forward With Lithium Batteries

A series of feasibility tests show that our application of Crystal Control Technology® to lead-acid battery chemistries can greatly benefit lithium-ion batteries’ performance. We are now advancing our technologies with lithium chemistries.

FAQ – Technology

Frequently Asked Questions

  • Our technology is mainly proven on lead-acid battery chemistries. However, we are in the middle of the adoption process for lithium-ion batteries showing promising results from our Crystal Control Technology.

  • Yes. Our family of technologies can either be used individually, in various combinations, or as an all-in-one solution for multiple applications

  • Our technologies can theoretically be applied to all applications dependent on battery-powered backup or energy storage. Everything from small-scale microgrid storage systems to telecom and data center storage, to large-scale macro grids such, as wind and solar power.

    Additionally, our technologies can independently be used in other applications such as battery manufacturing or recovery.

  • The great benefit of our technologies is that they can be integrated and applied to existing battery chemistries and battery storage systems.

    There is no need to produce a new battery to implement our technologies. Nor is there any need to build an entirely new backup or storage system. However, it is also possible to integrate this into new batteries, new backup, or energy storage systems.