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Tsinghua, MIT, Argonne team discovers lithium titanate hydrates for superfast, stable cycling in Li-ion batteries

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An international research team from Tsinghua University, MIT and Argonne National Laboratory has discovered a series of novel lithium titanate hydrates that show better electrochemical performances compared to all the Li 2 O–TiO 2 materials reported so far—including those after nanostructuring, doping and/or coating.

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LLTO anode material for safe batteries with a long cycle life

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Researchers at Karlsruhe Institute of Technology (KIT) and Jilin University in Changchun/China have investigated a highly promising anode material for future high-performance batteries: lithium lanthanum titanate with a perovskite crystal structure (LLTO). Illustration: Fei Du/Jilin University.

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Toshiba to supply Lithium-titanate battery for 2MW energy storage system project in UK; 1MWh SCiB

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Toshiba Corporation will supply the battery for the United Kingdom’s first 2MW scale lithium-titanate battery based Energy Storage System (ESS) to support grid management. The company’s 1MWh SCiB battery will be installed in a primary substation in central England in September.

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GM Ventures invests in battery-electric bus company Proterra

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a leading maker of battery-electric commercial transit buses. Proterra’s EcoRide BE-35 battery electric bus ( earlier post ) is averaging up to 24 mpg (diesel equivalent) in service, a more than 600% improvement over a typical diesel bus. near Clemson University International Center for Automotive Research. Proterra Inc.

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NYSERDA Commits $8M to Develop and Commercialize 19 New York Battery and Energy-Storage Technology Projects

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The awards are being made to companies and universities across New York that are involved in advanced research and development of energy storage applications that could benefit transportation, utility Smart Grid applications, renewable energy technologies, and other industries. Next-generation lithium-ion rechargeable batteries.

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Researchers develop nanoscale LTO anode with superior high temperature performance

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In our constant endeavor to improve the batteries, lithium titanium oxide, Li 4 Ti 5 O 12 (hereafter denoted as LTO), as anode materials hold a true significant position. In addition, the grain size of the LTO particles can be tuned and controlled by the calcination temperature. 6b00895.

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Researchers Develop Higher Performance Li-Ion Electrode Materials Using Ultracentrifugal Processing

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Researchers at the Naoi Laboratory at the Tokyo University of Agriculture and Technology have used an in situ sol-gel process induced by ultra-centrifugal mechanical agitation to add an active material inside carbon for use as electrode materials in lithium-ion batteries to improve performance.

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