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Researchers move closer to faster-charging Li-ion batteries; real-time tracking of Li ions in LTO

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A team of scientists led by the US Department of Energy’s (DOE) Brookhaven National Laboratory and Lawrence Berkeley National Laboratory has captured in real time how lithium ions move in lithium titanate (LTO), a fast-charging battery electrode material made of lithium, titanium, and oxygen.

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PNNL team develops carbon nanotube-silicon microspheres as high-performance Li-ion anodes

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Silicon is an appealing anode material for Li-ion batteries because it can hold about 10 times the electrical charge per gram compared to graphite. —Xiaolin Li. 2020) “Hierarchical porous silicon structures with extraordinary mechanical strength as high-performance lithium-ion battery anodes.”

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Novel molecular orbital interaction stabilizes cathode materials for lithium-ion batteries

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An international team led by scientists from the Institute for Superconducting and Electronic Materials at the University of Wollongong in Australia has verified that the introduction of novel molecular orbital interactions can improve the structural stability of cathode materials for lithium-ion batteries. Resources. D’Angelo, B.

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Roskill: Niobium industry looking for a future beyond steel; Li-ion batteries a possibility

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CAGR between 2010 and 2019, accelerating since 2016, according to Roskill Information Services. The maximum power output and minimum charging time of a lithium-ion battery depend on both ionic and electronic transport. 2018) “Niobium tungsten oxides for high-rate lithium-ion energy storage.” Griffith et al.

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LG Chem charges Li-ion trade secrets theft, files Federal suit against SK Innovation

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for misappropriation of Li-ion battery trade secrets, tortious interference with prospective economic advantage and other. the lithium-ion battery division of LG Chem, which developed the world’s. first commercial pouch-type Li-ion battery for automobiles. highly valued lithium ion battery trade secrets.

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DOE issues RFI on implementation of $335M Li-ion battery recycling programs

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The information collected may be used to inform DOE planning related to the following components of the bill: Section 40207(e), titled Lithium-Ion Battery Recycling Prize. Section 40207(f) titled, Battery and Critical Mineral Recycling: Battery Recycling Research, Development, and Demonstration Grants.

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NOVONIX and SandboxAQ partner to use AI to predict lifespan of Li-ion batteries

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With the rapidly growing demand for lithium-ion batteries required to support the global electrification trend, optimizing battery performance and cycle life on a timely basis is critical to enhance performance and reduce battery costs.

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