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Faradion 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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Jitendra EV expects to roll out sodium-ion-fuelled e-2ws in two years | Autocar Professional

Baua Electric

Jitendra New EV Tech, a Nashik-based electric two-wheeler maker focused on Tier 2 and Tier 3 markets, is targeting a CY25 or early CY26 launch for indigenously sodium-battery powered vehicles, according to the co-founder Samkit Shah. “In India, 2-3 big companies are looking to work on sodium batteries.

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India’s Top 10 Lithium-ion Battery Manufacturers for 2023

Electric Vehicles India

A lithium battery includes an anode, a cathode, a separator, an electrolyte, and a current collector. When the battery is charged, the positive electrode releases some of the lithium ions, which migrate through the electrolyte to the negative electrode. The battery absorbs and stores this energy.

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Industry study finds lead-acid to remain most wide-spread automotive energy storage for foreseeable future; new chemistries continue to grow

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Overview of the three vehicle classes identified in the study, and their corresponding battery technologies. In any automotive application, regulatory decisions to phase out established battery technologies would impact negatively on overall vehicle performance and cost, according to the report. Click to enlarge.

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CMU study concludes lithium market fluctuations unlikely to impact Li-ion battery prices significantly

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The Carnegie Mellon University researchers, whose study was published in the Journal of Power Sources , analyzed multiple lithium-ion battery chemistries and cell formats to see whether extreme lithium price variations would have a substantial impact.

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Stanford study quantifies energetic costs of grid-scale energy storage over time; current batteries the worst performers; the need to improve cycle life by 3-10x

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A plot of ESOI for 7 potential grid-scale energy storage technologies. Benson from Stanford University and Stanford’s Global Climate and Energy Project (GCEP) has quantified the energetic costs of 7 different grid-scale energy storage technologies over time. Credit: Barnhart and Benson, 2013. Click to enlarge. A new study by Charles J.

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Pike Research Forecasts Li-ion Batteries Will Become a $1.1B Segment of the Stationary Energy Storage Industry by 2018

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Of the eleven competing energy storage technologies analyzed in a recent report from Pike Research, the cleantech industry analyst firm forecasts that Li-ion batteries will be the fastest growing category for the Stationary Utility Energy Storage (SUES) sector, growing to a $1.1 —“Energy Storage Technology Markets”.

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