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This Rice University Professor Developed Cancer-Detection Technology

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Among her achievements: She invented an inexpensive, battery-operated optical imaging system that can detect premalignant tissues—no biopsy required—to help prevent oral and cervical cancer. Her team created a suite of low-cost medical devices, the NEST360 newborn tool kit, to improve neonatal health in sub-Saharan Africa.

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UH, Toyota researchers develop new cathode and electrolyte for high-power Mg battery rivaling Li-ion

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Magnesium batteries have long been considered a potentially safer and less expensive alternative to lithium-ion batteries, but previous versions have been severely limited in the power they delivered. The combination affords a Mg battery that delivers a specific power of up to 30.4?kW?kg —Dong et al.

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Unifrax introduces Battery Advisory Board to support SiFAB silicon fiber anode battery technology

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Unifrax, a manufacturer of high-performance specialty materials, introduced its Battery Advisory Board, which will meet regularly to provide strategic guidance as Unifrax grows its battery portfolio and enters the silicon anode market with its new SiFAB Silicon Fiber Anode Battery Technology. Earlier post.).

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New cobalt-free high-voltage spinel cathode material with high areal capacity

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Researchers from the University of California San Diego (UCSD) and the University of Texas at Austin, with colleagues at the US Army Research Laboratory and Lawrence Berkeley National Laboratory, have developed a thick cobalt-free high voltage spinel (LiNi 0.5 O 4 (LNMO)) cathode material with high areal capacity.

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UT Austin team devises new strategy for safe, low-cost, all-solid-state rechargeable Na or Li batteries suited for EVs

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Researchers at the University of Texas at Austin, including Prof. With this glass, a rechargeable battery with a metallic lithium or sodium anode and an insertion-compound as cathode may require a polymer or liquid catholyte in contact with the cathode. eV, which promises to offer acceptable operation at lower temperatures.

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DOE awarding more than $50M to 15 projects to advance critical material innovations

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Critical materials are used in many products important to the US economy and energy technologies, such as rare-earth elements used to manufacture high-strength magnets for offshore wind-turbine generators and lithium and cobalt in lithium-ion batteries for electric vehicles. Partners: Harper International, Phillips66.

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DOE awarding $19.4M to 22 advanced vehicle technologies projects; Mercedes-Benz, GM Li-S battery projects

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million to 22 new cost-shared projects to accelerate the research of advanced battery, lightweight materials, engine emission control technologies, and energy efficient mobility systems (EEMS). University of Maryland: College Park. Research thick cathodes using freeze casting methods for solid-state lithium batteries.