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Researchers use carbon-based anodes with “bumpy” surfaces for Li-ion batteries that last longer in extreme cold

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the key to addressing the low-temperature capacity loss lies in adjusting the surface electron configurations of the carbon anode to reinforce the coordinate interaction between the solvated Li + and adsorption sites for Li + desolvation and reduce the activation energy of the charge-transfer process. . … —Lu et al.

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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. One of the major challenges for graphite anodes is the exfoliation of the graphite framework on deep cycling at a fast current rate. 0c02742.

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Researchers develop room-temp 1,000+ cycle rechargeable solid-state lithium-air battery

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Researchers from the Illinois Institute of Technology (IIT), Argonne National Laboratory, and the University of Illinois at Chicago have developed a room-temperature solid-state lithium-air battery that is rechargeable for 1,000 cycles with a low polarization gap and can operate at high rates. Ngo, Paul C.

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Georgia Tech researchers develop aluminum-foil-based anodes for all-solid-state Li-ion batteries

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A team of researchers from the Georgia Institute of Technology, led by Matthew McDowell, associate professor in the George W. Metal negative electrodes that alloy with lithium have high theoretical charge storage capacity and are ideal candidates for developing high-energy rechargeable batteries. When a 30-μm-thick Al 94.5

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IIT, Argonne team designs Li2O-based Li-air battery with solid electrolyte; four-electron reaction for higher energy density

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Researchers at the Illinois Institute of Technology (IIT) and US Department of Energy’s (DOE) Argonne National Laboratory have developed a lithium-air battery with a solid electrolyte. The battery is rechargeable for 1000 cycles with a low polarization gap and can operate at high rates. —Kondori et al.

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Roskill sees recovery in lithium industry, buoyed by demand from rechargeable battery applications

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Q1 2020 saw monthly average prices fall further to less than US$7,000/t Li 2 CO 3 for the first time since 2014, eroding price increases caused by forecast strong demand growth in the lithium-ion battery industry and uncertainty over future supply.

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Umicore introducing new generation Li-ion battery recycling technologies; partnering with ACC

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Umicore, a global materials technology group, is a pioneer in the recycling of rechargeable batteries; its battery recycling plant in Hoboken, Belgium, has an annual capacity of 7,000 tons of lithium-ion (Li-ion) batteries and battery production scrap, the equivalent of 35,000 electric vehicle (EV) batteries.

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