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NSF awards $2M to Rice U collaboration to explore direct conversion of CO2 into fuels

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Koch School of Chemical Engineering Practice at the Massachusetts Institute of Technology; and Yuanyue Liu, an assistant professor of mechanical engineering at the University of Texas at Austin. We address both materials-level design and device-level engineering.

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UT Austin team proposes novel approach to suppress polysulfide shuttle in Li-S batteries

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Researchers at the University of Texas at Austin are proposing a novel approach to suppress the “polysulfide shuttle” in Li-S batteries—a freestanding, three-dimensional graphene/1T MoS 2 (3DG/TM) heterostructure with highly efficient electrocatalysis for lithium polysulfides (LiPSs). after 200 cycles.

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

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Phinix,LLC; Rare Earth Element Separation Using Gas-Assisted Micro-Flow Extraction with Task-Specific Ionic Liquids Partners: NICHE Industrial Chemicals, Virginia Polytechnic Institute and State University DOE share:$500,000; Cost share $225,000; Total costs: $725,000. Topic 2, Area of Interest 2: Conversion to Rare Earth Metals (RE-metals).

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UT Austin researchers significantly boost yield and speed of lipids production from engineered yeast; more efficient biofuel production

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Researchers in the Cockrell School of Engineering at The University of Texas at Austin have used a combination of metabolic engineering and directed evolution to develop a new strain of the yeast Yarrowia lipolytica featuring significantly enhanced lipids production that could lead to a more efficient biofuel production process.

Austin 150
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NSF launches $20M engineering research center aimed at converting natural gas into transportation fuels: CISTAR

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The NSF Engineering Research Center for Innovative and Strategic Transformation of Alkane Resources ( CISTAR ) will develop technologies for responsible conversion of alkanes—light hydrocarbons including methane, ethane and propane—into more valuable liquid fuels, including gasoline and diesel fuels.

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UT Austin team achieves best reported full-cell hybrid Li-air battery cycling with new ordered catalyst

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A team from the University of Texas at Austin led by Professor John Goodenough has achieved significantly enhanced activity and durability for the oxygen reduction reaction under alkaline conditions in a hybrid Li-Air battery using a new ordered Pd 3 Fe/C catalyst. Credit: ACS, Cui et al. Click to enlarge.

Austin 150
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Video Friday: Spot Levels Up

Cars That Think

This is an example of bridging the conversational nature of Chat GPT and other LLMs to generate real-world physical action. This panel, part of the Stanford HAI Spring Symposium on 24 May 2023, offered conversations between artists and technologists about intersections in their work. Moderated by Catie Cuan, Stanford University.