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Ionic Mineral Technologies launches nano-silicon product for Li-ion cell manufacturers

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Ionic Mineral Technologies, a developer of advanced silicon anode battery materials, launched its Generation 1 Ionisil nano-silicon product for Li-ion cell manufacturers. Earlier post.) The initial coulombic efficiency (ICE) of 85% is a significant achievement without any prelithiation.

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Researchers in China, US develop binder-free high-silicon-content flexible anode for Li-ion batteries

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A team from Zhejiang A&F University, Huazhong University of Science and Technology (HUST), and Stanford University have developed a binder-free, flexible, and free-standing electrode comprising an unprecedented 92% silicon content for Li-ion batteries. 1 , excellent cycling stability under a high silicon content of 85% (>2000 mAh g ?1

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Orion Engineered Carbons joins HiQ-CARB consortium; scaling up conductive acetylene black for Li-ion cathodes

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a global supplier of specialty and high-performance carbon black, has joined the HiQ-CARB consortium to provide the lithium-ion battery industry with sustainable and high-performance carbon additives. Lithium-Nickel-Manganese-Cobalt-Oxide) are electrically connected with each other and the current collector.

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GODI India achieves LFP BIS certification for indigenous Li-ion cells | Autocar Professional

Baua Electric

GODI India Private Limited, a Hyderabad-based lithium-ion cell R&D and manufacturer, has become the first Indian company to attain LFP BIS certification for its Lithium Iron Phosphate (LFP) Li-ion cells. The achievement marks progress toward reducing India’s dependence on imported LFP batteries.

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KAUST team devises electrically-driven membrane process for seawater lithium mining

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Researchers at King Abdullah University of Science and Technology (KAUST) in Saudi Arabia have developed a continuous electrically-driven membrane process which successfully enriches lithium from seawater samples of the Red Sea by 43,000 times (i.e., ppm) with a nominal Li/Mg selectivity >45 million. —Li et al. to 9013.43

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New stable Fe3O4/C composite material for conversion electrode in solid-state Li-ion batteries

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Researchers in Europe, with colleagues from Samsung R&D Institute in Japan, have developed a highly stable Fe 3 O 4 /C composite for use as a conversion electrode in all-solid-state Li-ion batteries. In addition, recently a new chemistry has surfaced, allowing to store more Li + by the so-called conversion mechanism. Resources.

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BASF and Argonne reach resolution with Umicore over Li-ion NMC patents infringement claims

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BASF and Argonne National Laboratory have reached a business resolution of their pending Li-ion battery patent disputes with Umicore. Patent Nos. 6,677,082; 6,680,143; 7,135,252; and 7,468,223. The parties are filing a petition for rescission of the existing limited exclusion order with the International Trade Commission (ITC).

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