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

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Sodium-ion battery technology has an inherent advantage over other power-storage technologies because it uses low-cost materials that are sustainable and widely available. Earlier post.).

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Researchers synthesize battery cathode from lignin derivatives

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Grzegorz Milczarek from Poznan University of Technology (Poland), and Olle Inganäs from Linköping University (Sweden), have combined lignin derivatives, which are electronic insulators, with polypyrole, a conductive polymer, into an interpenetrating composite suitable for use as a battery cathode. (B) Voltammograms recorded between 0.1

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New Li-S battery shows cycle performance comparable to that of Li-ion batteries along with more than double the energy density

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The team, led by a group from Hanyang University, used a highly reversible dual-type sulfur cathode (solid sulfur electrode and polysulfide catholyte) and a lithiated Si/SiO x nanosphere anode. The cathode consists of an activated carbon?sulfur Credit: ACS, Lee et al. Click to enlarge. 1 and 2500 Wh kg ?1. —Lee et al.

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DOE Awarding $620M for Smart Grid Demonstration and Energy Storage Projects

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(DOE funding $75,161,246, total project value with cost share $150,322,492). Los Angeles Department of Water and Power. In partnership with a consortium of local research institutions, this project deploy smart grid systems at partners’ university campus properties and technology transfer laboratories. Notrees Wind Storage.

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ARPA-E Awards $151M to 37 Projects for Transformative Energy Research

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The projects selected are grouped into 10 areas: Energy Storage (6 projects). Carbon Capture (5 projects). Renewable Power (4 projects). Electronville: High-Amperage Energy Storage Device-Energy Storage for the Neighborhood. Low Cost, High Energy and Power Density, Nanotube-Enhanced Ultracapacitors.

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