South Korea Makes Progress to Lithium-Oxygen Batteries With Ten Times Higher Energy Densities

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Researchers have presented a novel electrode material for advanced energy storage device that is directly charged with oxygen from the air. Professor Jeung Ku Kang’s team synthesized and preserved the sub-nanometric particles of atomic cluster sizes at high mass loadings within metal-organic frameworks (MOF) by controlling the behavior of reactants at the molecular level. This…

South Korea Makes Progress to Lithium-Oxygen Batteries With Ten Times Higher Energy Densities
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Researchers have presented a novel electrode material for advanced energy storage device that is directly charged with oxygen from the air. Professor Jeung Ku Kang’s team synthesized and preserved the sub-nanometric particles of atomic cluster sizes at high mass loadings within metal-organic frameworks (MOF) by controlling the behavior of reactants at the molecular level. This new strategy ensures high performance for lithium-oxygen batteries, acclaimed as a next-generation energy storage technology and widely used in electric vehicles. They have demonstrated ten-fold improvements in the life cycle. Lithium-oxygen batteries in principle can generate ten times higher energy densities than conventional lithium-ion batteries,
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