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New stable Fe3O4/C composite material for conversion electrode in solid-state Li-ion batteries

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In addition, recently a new chemistry has surfaced, allowing to store more Li + by the so-called conversion mechanism. Fe 3 O 4 , also known as magnetite, is a low cost, environmentally benign metal oxide that can undertake a reversible conversion reaction with Li + ions … which results in a theoretical capacity of 924 mAhg ?1

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DOE issues FOA for up to $4M for development of advanced H2 storage systems and materials

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The goal is to enable the widespread commercialization of hydrogen and fuel cell technologies and specifically to provide adequate hydrogen storage for onboard vehicle applications that meet the DOE hydrogen storage targets, as well as enabling early market applications such as materials handling equipment and portable power applications.

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DOE issues $10M incubator FOA for batteries, power electronics, engines, materials, fuels and lubricants

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VTO is seeking projects that address the major challenges to developing and commercializing batteries for plug?in As described in multiple DOE reports, the main barriers to widespread PEV commercialization are the cost; performance and life; and abuse tolerance of high?energy Specifically: the current cost of high?

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DOE issues RFI for hydrogen delivery R&D, targeting cost of $2-4 gge

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The operating and maintenance cost of in-service compressors is exacerbated by the on/off cycling of the compressors resulting from a lack of station demand. The capital cost of the commercial hardware remains high due to low production volumes. Composite carbon fiber and steel vessels are a potential alternative.

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$3M Award Supports Production of New Multi-tasking Fuzzy Fiber Nanomaterial; Energy Applications

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Nicknamed “fuzzy fiber” by its inventor at UDRI, Nano Adaptive Hybrid Fabric (NAHF-XTM) is the first tailored nanomaterial capable of being produced in sizes and quantities large enough to make them affordable and viable for large-scale commercial use. Everybody is growing carbon nanotubes on substrates. Khalid Lafdi.

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DOE to award up to $184M for advanced vehicle research and development in 8 areas of interest

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The goal of this AOI is to support advanced fuels and lubricants technologies that will enable optimal performance of advanced combustion engines for passenger and commercial vehicle applications. Such fuels should be currently available, or have the potential to become, commercially practical within the next 10 years.

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DOE to award up to $6.7M to projects to convert captured CO2 to useful products, including fuels

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DOE’s Office of Fossil Energy is seeking these projects as part of the Department’s Carbon Storage program, which has the goal of developing and advancing technologies to improve the effectiveness of carbon storage, reduce the cost of implementation, and be ready for widespread commercial deployment in the 2025–2035 timeframe.

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