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

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Woodruff School of Mechanical Engineering and the School of Materials Science and Engineering, is using an aluminum-foil-based anode in a solid-state Li-ion battery to create batteries with higher energy density and greater stability. When a 30-μm-thick Al 94.5 mA cm −2 ). —Liu et al.

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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. Image by Argonne National Laboratory.)

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PNNL: single-crystal nickel-rich cathode holds promise for next-generation Li-ion batteries

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Scientists at the US Department of Energy’s Pacific Northwest National Laboratory (PNNL) report new findings about how to make a single-crystal, nickel-rich cathode hardier and more efficient. Researchers are working on ways to store more energy in the cathode materials by increasing nickel content. —Bi et al.

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KERI researchers develop high-capacity Li-metal battery with improved rate performance and stability

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A research team at Korea Electrotechnology Research Institute (KERI) has developed a high-capacity Li-metal battery with improved rate performance and stability using a one-dimensional Li-confinable porous hollow carbon host. However, these hosts suffer from unwanted Li growth on their surface (i.e., Kang et al.

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Prieto introduces latest prototype of 3D Li-ion battery with 3-minute charging

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All three attributes of Prieto’s lithium-ion battery were tested and validated by a third-party accredited battery testing lab, Prieto said. Today’s batteries use a 2D architecture comprising stacked layers that must always compromise between energy storage and fast charging.

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EMBATT-goes-FAB project developing bipolar Li-ion batteries and production processes

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Project partners thyssenkrupp System Engineering GmbH, IAV GmbH, Daimler AG and the Fraunhofer Institute for Ceramic Technologies and Systems IKTS are developing bipolar Li-ion batteries and processes for their fabrication in the EMBATT -goes-FAB project sponsored by the German Federal Ministry for Economic Affairs and Energy.

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LG Chem invests in Enevate; silicon-dominant Li-ion battery technology

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Enevate Corporation, developer of a silicon-dominant composite anode material and high energy density batteries ( earlier post ), announced that LG Chem has participated in Enevate’s recent funding. Enevate’s HD-Energy Technology is a self-standing, silicon-dominant composite anode with more than 70% silicon. —,Robert A.

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