论文标题
从理性组件设计中开发用于锂离子电池的基于SI的阳极
Development of Si based anodes for Li-ion batteries from a rational component design
论文作者
论文摘要
受到冶金学家在设计新合金的智慧的启发,基于综合的计算材料工程(ICME)设计策略是为开发基于SI的锂离子电池(LIBS)的开发的。该策略始于SI-X的合理组件设计,其中X是加性组件,有助于克服纯Si阳极的问题。遵循SI-X阳极的组成,结构,财产和性能的优化,以满足其商业化的要求。除了针对纳米结构的SI阳极的广泛应用设计方案外,目前从ICME基于ICME的理性组件设计中提出的建议还可以加速发现有希望的基于SI的商业Libs的阳极。
Inspired by the wisdom of metallurgists in designing new alloys, the Integrated Computational Materials Engineering (ICME) based design strategy is proposed for development of Si based anodes for Li-ion batteries (LIBs). The strategy starts with a rational component design of Si-X, where X is the additive component(s) helping to overcome the problems of the pure Si anodes. An optimization of the composition, structure, property and performance of the Si-X anode is followed to fulfill the requirements for its commercialization. In addition to the widely applied designing scheme for the nanostructured Si anodes, the presently proposed one from the ICME based rational component design is expected to accelerate the discovery of the promising Si based anodes for commercial LIBs.