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MIT team devises approaches for practical carbon-nanotube-coated carbon fiber; stronger, more electrically conductive

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MIT scientists demonstrated two approaches for growing CNTs on carbon fiber without degrading the fiber strength. Researchers at MIT have demonstrated two approaches for producing carbon fibers coated in carbon nanotubes without degrading the underlying fiber’s strength. Credit: ACS, Steiner et al. Click to enlarge.

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Researchers propose new aluminum–sulfur battery with molten-salt electrolyte; low-cost, rechargeable, fire-resistant, recyclable

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An international team of researchers led by Quanguan Pang at Peking University and Donald Sadoway at MIT reports a bidirectional, rapidly charging aluminum–chalcogen battery operating with a molten-salt electrolyte composed of NaCl–KCl–AlCl 3. 2022) “Fast-charging aluminium–chalcogen batteries resistant to dendritic shorting.”

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ARPA-E awards $130M to 66 “OPEN 2012” transformational energy technology projects

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economical to store or transport. The Massachusetts Institute of Technology (MIT) will develop a. deployed remotely, MIT’s reformer could be used for small, remote sources of gas. The University of Tennessee will develop a technology that. carbon atoms, to store energy at ten times greater density than. Technology.

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DOE ARPA-E awards $156M to projects to 60 projects to accelerate innovation in clean energy technologies

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production of oil, which is stored in seeds and is convertible to. is one of the most energy dense forms of stored energy in. engineer sugarcane and sorghum to produce and store oil, a. system to pump, heat, store, and discharge the molten glass. stores energy from the sun to be released onto the grid at a.

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