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Titlebook: Development of Redox Mediators for High-Energy-Density and High-Efficiency Lithium-Oxygen Batteries; Youngmin Ko Book 2021 The Editor(s) (

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楼主: 喝水
发表于 2025-3-23 12:18:49 | 显示全部楼层
2190-5053 redox mediators in improving the performance of lithium-oxyThis thesis addresses the introduction of redox mediator into lithium-oxygen batteries to improve their electrochemical performance especially in terms of practical energy density and round-trip efficiency. In chapter 1, basic electrochemis
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Grundlagen der Sedimentbewegunglysts for Li–O. battery and contributes to realizing practically feasible Li–O. battery. Furthermore, it will provide stong research insight in developing various next-generation energy storage systems that necessitates the development of optimal catalysts.
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Grundlagen der Schwingungstechnik 2amethyl-1-piperidinyloxy) shows the highest mass diffusion rate. Furthermore, the selection of electrolytes is observed to greatly influence the rate capability of the RM-assisted charge, and thereby be carefully considered.
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Conclusion,lysts for Li–O. battery and contributes to realizing practically feasible Li–O. battery. Furthermore, it will provide stong research insight in developing various next-generation energy storage systems that necessitates the development of optimal catalysts.
发表于 2025-3-24 15:23:19 | 显示全部楼层
Book 2021s of practical energy density and round-trip efficiency. In chapter 1, basic electrochemistry regarding lithium-oxygen batteries and redox mediators are introduced. In chapter  2 to 4,  comprehensive researches including the discovery of a new redox mediator inspired by biological system, the invest
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https://doi.org/10.1007/978-3-662-59561-9f the electrode, thereby boosting the discharge capacity by ~30 times. The similarity of the redox mediation in the biological cell respiration and lithium–oxygen ‘cell’ inspires the exploration of redox active bio-organic molecules for high-performance RMs for lithium–oxygen batteries.
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