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ion Ventures and LiNa Energy conclude successful test of solid-state sodium-nickel battery platform

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ion Ventures, a modern utility and energy storage infrastructure specialist, and LiNa Energy , a solid-state battery technology developer, concluded their first successful trial of LiNa’s proprietary solid-state sodium-nickel battery platform at an undisclosed location in South East England last week.

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CATL introduces first generation of sodium-ion batteries; up to 160 Wh/kg; targeting >200 Wh/kg with Gen 2

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(CATL) unveiled its first-generation sodium-ion battery, together with its AB battery pack solution—which is able to integrate sodium-ion cells and lithium-ion cells into one pack. The sodium-ion battery has a similar working principle to the lithium-ion battery; sodium ions shuttle between the cathode and anode.

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Researchers develop bimetallic Bi-Sn microspheres as high-performance anode materials for sodium-ion batteries

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BiSn)for use as high-performance anode materials for sodium-ion batteries (SIBs) using ether-based electrolytes. have attracted extensive attention as high performance anode materials for sodium-ion batteries. a) Galvanostatic charge/discharge curves at 0.1 e) Galvanostatic discharge/charge curves of ?-BiSn 1 at 10 A g ?1

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Argonne researchers find cathode material synthesis a key reason for performance degradation of sodium-ion batteries

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One of the more promising candidates for batteries beyond the current standard of lithium-ion materials is the sodium-ion (Na-ion) battery. Na-ion is particularly attractive because of the greater abundance and lower cost of sodium compared with lithium. In addition, when cycled at high voltage (4.5

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PNNL team develops electrolyte for high-voltage sodium-ion battery with extended longevity

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Cheap and abundant, sodium is a promising candidate for new battery technology. However, the limited performance of sodium-ion batteries has hindered large-scale application. Sodium-ion batteries (NIBs) have attracted worldwide attention for next-generation energy storage systems. A paper on the work appears in Nature Energy.

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BASF investigating sodium-air batteries as alternative to Li-air; patent application filed with USPTO

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Discharge–charge cycles of Na–O 2 cells at various current densities (i.e., V for charge. In a paper in Nature Materials , a team of researchers from BASF SE and Justus-Liebig-Universität Gießen report on the performance of a sodium-air (sodium superoxide) cell. the rate capability). Cutoff potentials were set to 1.8

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PNNL team develops sodium-manganese oxide electrodes for sodium-ion rechargeable batteries

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as a function of charge/discharge cycles at different charge/discharge current densities of. Sodium is seen by some as a promising alternative, but the sodium-sulfur batteries currently in use run at temperatures above 300 °C, making them less energy efficient and safe than batteries that run at ambient temperatures.

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