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Novel copolymer binder extends the life of lithium-ion batteries

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One of the major causes for the drop in capacity over time in Li-ion batteries is the degradation of the widely used graphite anodes. interactions between the bis-imino-acenaphthenequinone groups and graphite, and also from the good adherence of the copolymer’s ligands to the copper current collector of the battery. —Prof.

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Researchers develop soft co-crystalline solid electrolyte for lithium-ion batteries

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b, Packing diagram of (Adpn) 2 LiPF 6 showing the channels of Li⁺ ions in the low-affinity matrix in the crystal structure. 2023) “A soft co-crystalline solid electrolyte for lithium-ion batteries.” .; colored box shows the dimensions of unit cell; red, a-crystallographic direction; blue, c-crystallographic direction.

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UCR researchers find commercial fast-charging damages EV batteries, propose new internal-resistance-based technique

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Commercial fast-charging stations subject electric car batteries to high temperatures and high resistance that can cause them to crack, leak, and lose their storage capacity, according to researchers at the University of California, Riverside (UCR) in a new open-access study published in the journal Energy Storage. Ozkan Lab/UCR).

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Li-Cycle commercial lithium-ion battery recycling plant now operational in Rochester, NY

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North America’s largest capacity lithium-ion battery recycling company, announced that its Spoke 2 facility at Eastman Business Park (EBP) in Rochester, New York is now fully operational. The company processes all types of lithium-ion batteries regardless of their previous application, chemistry, or state of charge.

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Nyobolt partners with Callum to showcase ultra-fast charging niobium-based battery in Elise-inspired EV

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Nyobolt, the developer of ultra-fast charging niobium-based battery technology ( earlier post ) has partnered with UK designer Callum to showcase its advanced battery technology in an Elise-inspired electric sports car that can charge in six minutes. —Sai Shivareddy, CEO at Nyobolt

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Stanford scientists identify new Li-B-S solid electrolyte materials that boost lithium-ion battery performance

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Stanford University scientists have identified a new solid-state Li-ion electrolyte predicted to exhibit simultaneously fast ionic conductivity, wide electrochemical stability, low cost, and low mass density. log scale) of several known solid Li-ion conductors and the predicted values for the best Li?B?S Sendek et al.

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Ingevity enters EV battery market with $60M investment in lithium-ion anode materials producer Nexeon

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UK-based Nexeon is a desiger of silicon-based anode materials that improve performance of lithium-ion batteries for EVs and consumer electronics. Nexeon’s customers have found that NSP-2 offers a step-change improvement in lithium-ion battery performance while also reducing the weight of the battery.