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Organic Negative Electrode Materials for Metal-Ion and Molecular-Ion Batteries: Progress and Challenges from a Molecular Engineering Perspective

机译:用于金属离子和分子离子电池的有机负极材料:分子工程角度的进步与挑战

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摘要

In the critical area of sustainable energy storage, organic batteries are gaining momentum as strong candidates thanks to their lower environmental footprint and great structural versatility. A plethora of organic materials have been proposed and evaluated as both positive and negative electrode materials. Whereas positive electrode chemistries have attracted extensive attention in the context of practical research and advances overviews, the negative electrode field remains poorly analyzed from a critical point of view. This review summarizes and provides an assessment of different classes of organic compounds with potential applications as negative electrode materials for metal-ion and molecular-ion batteries. The impact of molecular design on the electrochemical performance and guidelines for remaining challenges are highlighted.
机译:在可持续储能的临界领域,由于其较低的环境足迹和巨大的结构多功能性,有机电池获得强大候选人的势头。 已经提出了一种多种有机材料,并评估为正极和负极材料。 虽然正电极化学物质在实际研究的背景下引起了广泛的关注,但是,负电极场仍然从临界角度分析很差。 本综述总结并提供了对不同类别的有机化合物的评估,其潜在的应用是金属离子和分子离子电池的负电极材料。 突出了分子设计对电化学绩效和致残挑战指南的影响是突出的。

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