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Pre-Lithiation Strategies for Rechargeable Energy Storage Technologies: Concepts, Promises and Challenges

机译:可充电储能技术的锂化前策略:概念,承诺和挑战

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In order to meet the sophisticated demands for large-scale applications such as electro-mobility, next generation energy storage technologies require advanced electrode active materials with enhanced gravimetric and volumetric capacities to achieve increased gravimetric energy and volumetric energy densities. However, most of these materials suffer from high 1st cycle active lithium losses, e.g., caused by solid electrolyte interphase (SEI) formation, which in turn hinder their broad commercial use so far. In general, the loss of active lithium permanently decreases the available energy by the consumption of lithium from the positive electrode material. Pre-lithiation is considered as a highly appealing technique to compensate for active lithium losses and, therefore, to increase the practical energy density. Various pre-lithiation techniques have been evaluated so far, including electrochemical and chemical pre-lithiation, pre-lithiation with the help of additives or the pre-lithiation by direct contact to lithium metal. In this review article, we will give a comprehensive overview about the various concepts for pre lithiation and controversially discuss their advantages and challenges. Furthermore, we will critically discuss possible effects on the cell performance and stability and assess the techniques with regard to their possible commercial exploration.
机译:为了满足诸如电动汽车等大规模应用的复杂需求,下一代储能技术需要具有增强的重量和体积容量的先进电极活性材料,以实现更高的重量能量和体积能量密度。然而,这些材料中的大多数遭受例如由固体电解质中间相(SEI)形成引起的高的第一循环活性锂损失,这反过来阻碍了它们迄今为止的广泛商业用途。通常,活性锂的损失通过消耗正极材料中的锂而永久性地降低了可用能量。预锂化被认为是补偿活性锂损失并因此增加实际能量密度的极具吸引力的技术。迄今为止,已经评估了各种预锂化技术,包括电化学和化学预锂化,借助添加剂进行的预锂化或通过直接接触锂金属进行的预锂化。在这篇评论文章中,我们将对预锂化的各种概念进行全面概述,并有争议地讨论它们的优势和挑战。此外,我们将批判性地讨论对细胞性能和稳定性的可能影响,并就其可能的商业开发评估技术。

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