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Advent Technologies to collaborate with Los Alamos, UT Austin, RPI, UNM and Toyota in the development of next-generation HT-PEM fuel cell technology

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Drawing on our leadership team’s decades of experience, we intend to commercialize and scale-up membrane electrode assembly (MEA) production while working closely with Tier-1 manufacturers and original equipment manufacturers. The program is funded by an Advanced Research Projects Agency–Energy (ARPA-E) OPEN award.

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DOE awarding $46M to 8 companies to support commercial fusion energy development

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These awardees will work to acheive important technical and commercialization milestones to advance successful design of a fusion pilot plant (FPP) to move fusion toward technical and commercial viability. Commercial fusion power on a decadal timescale with the compact, high-field ARC power plant. Austin, TX).

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BMW i Ventures invests in GenXComm to increase speed and lower cost of 5G rollout; microphotonics-based full-duplex, high-speed communication

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With the switch to 5G costing global carriers a 60% to 300% increase in infrastructure costs, GenXComm’s technology has the potential to save 5G providers billions of dollars, reducing the cost of implementing 5G by up to 80%.

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DOE announces Stage 1 CABLE Conductor Manufacturing Prize Winners

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The Clean Carbon Conductors team, with members from Rice University and DexMat Co, is designing enhanced-conductivity CNTs by improving fiber quality, alignment, packing density, and by electrochemically doping the CNTs. Each winning team has earned a $25,000 cash prize and a stipend for third-party conductivity testing in Stage 2.

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U Texas Austin team finds P2S5 electrolyte additive enables use of Li2S bulk particles for high-capacity cathodes in lithium-sulfur batteries; ~800 mAh/g

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Researchers at the University of Texas at Austin, led by Prof. enables the direct use of commercially available bulk Li 2 S particles as high-capacity cathode materials for rechargeable Li?S The ability to use commercially available bulk particles could significantly decrease the manufacturing cost of Li?S

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

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Projects selected under this funding opportunity announcement will reduce both the costs of critical materials and the environmental impacts of production. Technology Holding LLC; Next Generation Separation Method for Rare Earths Partners: Massachusetts Institute of Technology DOE share: $499,673; Cost share: $124,999; Total costs: $624,672.

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Remembering Lithium-Ion Battery Pioneer John Goodenough

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Goodenough, a professor of electrical and computer engineering at the University of Texas at Austin , authored more than 800 technical papers during his career. He probably is best known for developing the lithium cobalt oxide cathode in 1980—which became the foundation for Sony’s first commercial lithium-ion battery in 1991.