Changan and CATL Partner to Launch Sodium-Ion Battery Vehicles in 2026
Changan Automobile has announced a strategic partnership with Contemporary Amperex Technology Co. Limited (CATL) to integrate sodium-ion battery technology into its upcoming electric vehicle lineup. The collaboration aims to launch multiple passenger vehicles featuring these new batteries by 2026. According to CATL, the sodium-ion cells offer an energy density of 175 Wh/kg, enabling pure electric vehicles to achieve a driving range of over 400 kilometers on a single charge, with potential future upgrades reaching 600 kilometers. Additionally, range-extended hybrid models are expected to exceed the 400-kilometer mark. To support this initiative, CATL plans to deploy 3,000 battery swap stations across more than 140 cities. This infrastructure development is part of a broader strategy to establish a dual sodium-lithium battery technology ecosystem. The move signifies a significant step in diversifying battery chemistries for the automotive industry, potentially reducing reliance on lithium while offering cost-effective and efficient energy storage solutions for mainstream electric mobility.
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Changan and CATL Partner to Launch Sodium-Ion Battery Vehicles in 2026
Changan Automobile has announced a strategic partnership with Contemporary Amperex Technology Co. Limited (CATL) to integrate sodium-ion battery technology into its upcoming electric vehicle lineup. The collaboration aims to launch multiple passenger vehicles featuring these new batteries by 2026. According to CATL, the sodium-ion cells offer an energy density of 175 Wh/kg, enabling pure electric vehicles to achieve a driving range of over 400 kilometers on a single charge, with potential future upgrades reaching 600 kilometers. Additionally, range-extended hybrid models are expected to exceed the 400-kilometer mark. To support this initiative, CATL plans to deploy 3,000 battery swap stations across more than 140 cities. This infrastructure development is part of a broader strategy to establish a dual sodium-lithium battery technology ecosystem. The move signifies a significant step in diversifying battery chemistries for the automotive industry, potentially reducing reliance on lithium while offering cost-effective and efficient energy storage solutions for mainstream electric mobility.
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