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Sustainable Materials for Sustainable Energy Storage: Organic Na Electrodes

机译:可持续储能的可持续材料:有机钠电极

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In this review, we summarize research efforts to realize Na-based organic materials for novel battery chemistries. Na is a more abundant element than Li, thereby contributing to less costly materials with limited to no geopolitical constraints while organic electrode materials harvested from biomass resources provide the possibility of achieving renewable battery components with low environmental impact during processing and recycling. Together, this can form the basis for truly sustainable electrochemical energy storage. We explore the efforts made on electrode materials of organic salts, primarily carbonyl compounds but also Schiff bases, unsaturated compounds, nitroxides and polymers. Moreover, sodiated carbonaceous materials derived from biomasses and waste products are surveyed. As a conclusion to the review, some shortcomings of the currently investigated materials are highlighted together with the major limitations for future development in this field. Finally, routes to move forward in this direction are suggested.
机译:在这篇综述中,我们总结了为新型电池化学实现基于Na的有机材料的研究工作。 Na是一种比Li更丰富的元素,因此可提供成本较低且不受地缘政治限制的材料,而从生物质资源中收集的有机电极材料可提供在加工和回收过程中获得对环境影响较小的可再生电池组件的可能性。总之,这可以构成真正可持续的电化学能量存储的基础。我们探索了在有机盐(主要是羰基化合物,但还有席夫碱,不饱和化合物,氮氧化物和聚合物)的电极材料方面所做的努力。此外,还对源自生物质和废物的碳酸钠材料进行了调查。作为审查的结论,强调了当前研究材料的一些缺点以及该领域未来发展的主要局限性。最后,提出了朝这个方向前进的路线。

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