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New Binder Enables Significantly Better Heat Management in Lithium Ion Batteries

瀏覽次數:945

Soteras CCS binder, a new binder technology from Ashland, enables manufacturers to address one of the biggest technology obstacles: heat shrinkage of the battery’s separator. Heat shrinkage can profoundly affect the lifespan and safety of lithium ion batteries.

Compared to PVDF and PVP binders, Soteras CCS binders substantially improve the performance of ceramic-coated polyethylene (PE) and polypropylene (PP) separators in lithium ion batteries by minimizing heat shrinkage at temperatures up to 140° C.

“As applications for lithium ion batteries evolve from smaller consumer electronics to electric vehicles and mass storage, there is a push for higher density cells. High capacity lithium ion batteries must work without sacrificing safety or performance,” said Dr. Robert Gibbison, marketing director, Industrial Specialties, Ashland.

“Soteras CCS binders are unmatched for ceramic coated separators. Furthermore, separator producers can integrate Soteras CCS binders without substantially altering their standard manufacturing processes.”

Soteras CCS binders are electrolyte insoluble and work effectively with single- and multi-layer separators.

Solteras CCS binders comprise a two-component coating system that is compatible with typical coating processes, and results in good lithium ion permeability while minimizing negative effects on cell electrochemistry (cycling or rate study).

稀土棋局下的台灣解方:從供應鏈韌性看關鍵礦物合作新契機
特別企劃半導體

稀土棋局下的台灣解方:從供應鏈韌性看關鍵礦物合作新契機

稀土與關鍵礦物已成全球科技競爭與經濟安全的重要戰略資源。面對供應鏈高度集中與地緣風險升高,台灣如何透過國際合作、技術替代、戰略儲備與城市採礦,建立自主且具韌性的關鍵礦物供應體系?

稀土與關鍵礦物已成全球科技競爭與經濟安全的重要戰略資源。面對供應鏈高度集中與地緣風險升高,台灣如何透過國際合作、技術替代、戰略儲備與城市採礦,建立自主且具韌性的關鍵礦物供應體系?

關鍵字:power