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ARTS Energy in supply agreement with Hunan Copower for NiMH cells for HEV applications in Europe; 1st step into transportation market

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France-based ARTS Energy, a manufacturer of battery-based energy storage solutions using a variety of chemistries, is entering the hybrid-electric vehicle and very high power application markets via a strategic partnership with Hunan Copower EV Battery Co, a subsidiary of the Corun Group.

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Graphene-based supercapacitor offers energy density comparable to NiMH battery, but with rapid charge and discharge

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Researchers from Nanotek Instruments and Angstron Materials have developed a graphene-based supercapacitor that exhibits a specific energy density of 85.6 These values are comparable to those of NiMH batteries, the researchers note, but the new supercapacitor offers the ability to be charged or discharged within seconds or minutes.

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Hybrid DLC-Battery Energy Storage System for Streetcars

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Siemens earlier this year launched a new hybrid energy storage system for streetcars that combines a double-layer capacitor (DLC) and NiMH battery pack. Streetcars equipped with the Sitras HES hybrid energy storage system can be driven up to 2,500 meters (1.6 miles) without an overheadcontactt line (OCL).

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3D self-assembling nanostructure for cathodes enables very rapid charge and discharge without sacrificing capacity; potential for EVs

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Researchers at the University of Illinois at Urbana-Champaign have developed a self-assembling three-dimensional nanostructure for battery cathodes (Li-ion and NiMH) that allows for faster charging and discharging without sacrificing energy storage capacity. Most capacitors store very little energy. 2011.38.

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ARPA-E awarding $36M to 22 projects in RANGE program for transformative EV storage

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The US Department of Energy (DOE) Advanced Research Projects Agency - Energy (ARPA-E) will award approximately $36 million to 22 projects to develop transformational electric vehicle (EV) energy storage systems using innovative chemistries, architectures and designs. Rare-Earth Free NiMH Alloy for EV Batteries.

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Life cycle analysis of three battery chemistries for PHEVs and BEVs; environmental impacts higher than expected

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They compiled a transparent life cycle inventory (LCI) in a component-wise manner for nickel metal hydride (NiMH), nickel cobalt manganese lithium-ion (NCM), and iron phosphate lithium-ion (LFP) batteries. A paper on the study appears in the ACS journal Environmental Science & Technology. —Majeau-Bettez et al.

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University of Illinois licenses StructurePore cathode technology to Xerion for commercialization of the ultra-rapid charging technology

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In a paper published in Nature Nanotechnology in March, Braun and his group reported on the development of a self-assembling three-dimensional nanostructure for battery cathodes (supporting both Li-ion and NiMH chemistries) that allows for faster charging and discharging without sacrificing energy storage capacity.

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