Lithium Werks

Lithium Werks Lithium Werks provides save and mobile energy solutions to enable the transition from fossil fuels t

16/04/2026

A sneak peek in our factory, where the crucial process starts, the mixing of the proprietary ingredients of the LithiumWerks Nanophosphate® LFP chemistry.

LithiumWerks Nanophosphate® is a comprehensive materials engineering platform that addresses the intrinsic kinetic and structural limitations of olivine LiFePO4. ​ Unlike conventional "nano-LFP" materials, it delivers superior power capability, electrode density, thermal behavior, and cycle life through precise control of crystallite size, architecture, carbon connectivity, and densification.

Nanophosphate® technology demonstrates longer cycle life, reduced impedance growth, and lower peak temperatures during high-rate cycling. ​

Cells manufactured using LithiumWerks Nanophosphate® technology maintain high power and utilization windows with minimal degradation over thousands of cycles.

If you would like to find out more about LithiumWerks' Nanophosphate®, contact us at [email protected]

Low‑Temperature Performance for Lithium-Ion Batteries ❄️One of the most persistent myths in the battery world is that “a...
13/04/2026

Low‑Temperature Performance for Lithium-Ion Batteries ❄️
One of the most persistent myths in the battery world is that “all LFP cells behave the same at low temperature.” The data shows a very different reality.

Under low temperature, the manufacturer matters as much as the chemistry.
LithiumWerks’ Nanophosphate® LFP technology is robust, safe, and cost‑effective.

❄️ 1. Capacity Retention Drops… but Not Uniformly
The gap between “spec sheet” and “real use” becomes very visible in winter conditions.

⚡ 2. Internal Resistance Tells the Real Story
Higher resistance, making high‑power operation nearly impossible.

🚗 3. Charge Acceptance Makes or Breaks Winter Usability
Under low temperature most LFP cells require pre‑heating to accept current safely.

📉 4. Energy vs. Power: Who Wins? Choosing the “wrong” LFP type for a cold environment leads to poor cold‑start performance, reduced cycle life, unhappy customers

🧪 5. What This Means for Integrators & OEMs
Low‑temperature performance is no longer a nice‑to‑have spec, it’s a competitive differentiator

If you’re evaluating low temperature LFP performance and want to avoid surprises at –10 °C, –20 °C or below, and want to know more about LithiumWerks’ Nanophosphate® LFP technology low temperature performance, contact us at [email protected]

LithiumWerks' Nanophosphate® is a comprehensive materials engineering platform that addresses the intrinsic kinetic and ...
31/03/2026

LithiumWerks' Nanophosphate® is a comprehensive materials engineering platform that addresses the intrinsic kinetic and structural limitations of olivine LiFePO4. Unlike conventional "nano-LFP" materials, it delivers superior power capability, electrode density, thermal behavior, and cycle life through precise control of crystallite size, architecture, carbon connectivity, and densification.

• Nanophosphate® technology demonstrates longer cycle life, reduced impedance growth, and lower peak temperatures during high-rate cycling.
• Cells maintain high power and utilization windows with minimal degradation over thousands of cycles.

If you like to find out more on LithiumWerks' Nanophosphate®, contact us at [email protected]

Lithium Werks attended the BAE Supplier Conference in Boston. Our battery cells are a good match for high end applicatio...
27/03/2026

Lithium Werks attended the BAE Supplier Conference in Boston. Our battery cells are a good match for high end applications.

"The Lithium Werks LFP cell has the lowest lifetime impact due to its longer cycle life. This is an important considerat...
18/03/2026

"The Lithium Werks LFP cell has the lowest lifetime impact due to its longer cycle life. This is an important consideration, especially for novel chemistries like sodium-ion, where cycle life is a competitive factor."

Read about battery sustainability and Life Cycle Assessment recently published by About:Energy. The article is the result of an independent analysis that lists the Lithium Werks 18650 Energy Cell as the total “cradle to grave” lowest carbon footprint cell vs. such leading cells as LG and Molicell 18650s.

https://lithiumwerks.com/battery-sustainability-and-life-cycle-assessment/

We often talk about the risks of exposing lithium batteries to extremely high temperatures, but did you know that cold w...
24/02/2026

We often talk about the risks of exposing lithium batteries to extremely high temperatures, but did you know that cold weather is also a major challenge for these technologies?

While many suppliers today claim Nanophosphate LFP, only materials that control crystallite size, architecture, carbon connectivity, and densification behavior together deliver the full performance envelope that has been associated, for the last decade, with LithiumWerks’ Nanophosphate® technology.

At LithiumWerks, we are constantly working to improve our cells and our Nanophosphate technology so they can effectively withstand extreme - both high and low - temperatures. Our research and innovations are aimed at ensuring that our Nanophosphate cells remain high-performing and reliable, even under the hottest and coldest conditions.

If you are interested and want to learn more about our Nanophosphate technology, reach out to us at [email protected]

Reliance Lithium Werks Chinese New Year Party in Changzhou - United in Vision, Charging Ahead!
17/02/2026

Reliance Lithium Werks Chinese New Year Party in Changzhou - United in Vision, Charging Ahead!

Wishing all our valued customers and business partners a Happy New Year!祝我们尊贵的客户与合作伙伴新年快乐!
12/02/2026

Wishing all our valued customers and business partners a Happy New Year!
祝我们尊贵的客户与合作伙伴新年快乐!

Superior technology for over lead acid.
29/01/2026

Superior technology for over lead acid.

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