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Accelerating the practical application of next-gen batteries that are fire-resistant through dual-layer coating

Accelerating the practical application of next-gen batteries that are fire-resistant through dual-layer coating
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A Joint Research Team from DGIST and KITECH is Accelerating the Practical Application of Next-Generation Batteries that are Fire-Resistant through Dual-Layer Coating Technology!

A Joint Research Team from DGIST and KITECH is Accelerating the Practical Application of Next-Generation Batteries that are Fire-Resistant through Dual-Layer Coating Technology!
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Attaining a significant improvement in battery life through the use of a lithium cathode created by electroplating

Attaining a significant improvement in battery life through the use of a lithium cathode created by electroplating
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DGIST, significant improvement in battery life through lithium cathode created by electroplating

DGIST, significant improvement in battery life through lithium cathode created by electroplating
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Study: diluting high concentration electrolytes can improve cycling of Li-metal batteries over a wide range of temperatures

Researchers from DGIST (Gyeongbuk Institute of Science and Technology, Republic of Korea) have demonstrated lithium metal battery cycling over a wide range of temperatures (2-60°C) by adopting a new dilution technique for high concentration electrolytes. Insights from the study, published in Chemical Engineering Journal, could prove useful for development of.

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