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首页> 外文期刊>ECS Journal of Solid State Science and Technology >Carbon-Based Electrodes for Lithium Air Batteries: Scientific and Technological Challenges from a Modeling Perspective
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Carbon-Based Electrodes for Lithium Air Batteries: Scientific and Technological Challenges from a Modeling Perspective

机译:锂空气电池的碳基电极:从建模角度看科学和技术挑战

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摘要

The carbon-based positive electrode of Lithium Air Batteries (LABs) is the component where the major competitive mechanisms occur, such as the electrochemical reactions leading to the formation and decomposition of multiple types of lithium oxides, lithium ion and electronic transport as well as oxygen transport. Through a multiscale viewpoint, this review discusses available models describing LAB carbon-based electrodes from the atomistic to continuum approaches. Relevance of those approaches versus experimental data as well as the remaining scientific and technological challenges of these technologies are analyzed. Finally, this review briefly introduces a new theory aiming at studying the impact of the positive electrode carbon structure onto the cyclability of LABs.
机译:锂空气电池(LABs)的碳基正极是发生主要竞争机制的成分,例如电化学反应会导致多种类型的氧化锂,锂离子和电子传输以及氧气的形成和分解运输。通过多尺度的观点,本综述讨论了从原子方法到连续方法描述LAB碳基电极的可用模型。分析了这些方法与实验数据的相关性,以及这些技术的剩余科学技术挑战。最后,本文简要介绍了旨在研究正极碳结构对LAB循环性的影响的新理论。

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