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FaradionĀ and Phillips 66 to develop lower cost and higher-performing sodium-ion battery materials

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UK-based Faradion, a developer of sodium-ion battery technology ( earlier post ), and Phillips 66 have launched a new technical collaboration to develop lower-cost and higher-performing anode materials for sodium-ion batteries. Earlier post.).

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UT Austin team identifies promising new cathode material for sodium-ion batteries: eldfellite

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Professor John Goodenough, the inventor of the lithium-ion battery, and his team at the University of Texas at Austin have identified a new cathode material made of the nontoxic and inexpensive mineral eldfellite (NaFe(SO 4 ) 2 ), presenting a significant advancement in the quest for a commercially viable sodium-ion battery.

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Lund researchers develop optimized two-phase enzymatic process for production of biodiesel

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Researchers at Lund University (Sweden) have developed an optimized two-phase enzymatic (lipase) system for the conversion of plant oils to biodiesel. The next step would be to adapt the methodology to readily available cheap waste oils. Under the mild conditions used, chemical catalysts were inefficient.

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Self-propelled catalytic microparticles boost hydrogen release from liquid storage media

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Researchers at the University of California San Diego (UCSD) have developed catalytically active micromotors that significantly increase the release of hydrogen from liquid storage media. Various technologies are available for H 2 storage, such as high-pressure cylinders, liquefaction, and reformation from hydrocarbons. Virendra V.

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Oregon State researchers demonstrate potassium-ion (K-ion) battery

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Researchers at Oregon State University have shown that potassium can work with graphite in a potassium-ion battery (KIB)—a discovery that could offer a challenge and sustainable alternative to the widely-used lithium-ion battery (LIB). Zelang Jian, Wei Luo, and Xiulei Ji (2015) ā€œCarbon Electrodes for K-Ion Batteriesā€ J.

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MIT and Moscow State collaborating on advanced batteries, metal-air batteries and reversible fuel/electrolysis cells

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Researchers at the Skoltech Center for Electrochemical Energy Storage (CEES), a partnership between the MIT Materials Processing Center and Lomonosov Moscow State University, are focusing on the development of higher capacity batteries. Rechargeable metal-air batteries. We can use it in vehicles, we can use it in aircraft, and so forth.

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