首页> 外文期刊>Journal of Energy Storage >Protective coatings on silicon particles and their effect on energy density and specific energy in lithium ion battery cells: A model study
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Protective coatings on silicon particles and their effect on energy density and specific energy in lithium ion battery cells: A model study

机译:硅颗粒上的保护涂层及其对锂离子电池单元中能量密度和特定能量的影响:模型研究

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Protective coating on silicon particles is a strategy reported in literature to improve capacity retention of Sicontaining lithium ion batteries. Up to date, the impact of the coating on the cell energy density and specific energy is not considered and guidelines for coating design are missing. In this paper a model is proposed to fill this gap. The model depicts how energy density and specific energy of lithium ion cells based on a Si-graphite composite electrode change in function of coating type, thickness and silicon weight fraction in the negative electrode. Volume changes during lithiation-delithiation and corresponding electrolyte displacement are also considered. Energy density depends on the ratio of coating thickness to silicon particle dimension and weight fraction of silicon in the electrode. Specific energy depends - marginally - also on the coating type. As a case study silicon spherical particles of 200 nm diameter are considered. For a 10 nm coating, the maximum energy density gain vs. state of art graphite negative electrodes is 13%, obtained with 40% weight fraction of silicon in the negative electrode. Above 60 nm thickness no improvement can be obtained vs. state of art graphite negative electrodes.
机译:硅颗粒上的保护涂层是文献中报道的策略,以提高Sicontaining锂离子电池的能力保持。迄今为止,不考虑涂层对细胞能量密度和特定能量的影响,并且缺少涂层设计指南。在本文中,提出了一种模型来填补这种差距。该模型描绘了基于涂层型,厚度和硅重量分数的Si-石墨复合电极变化的锂离子电池的能量密度和特定能量。还考虑了锂化 - 脱锂和相应的电解质位移期间的体积变化。能量密度取决于涂层厚度与电极中硅颗粒尺寸的比例和重量分数。特定能量取决于 - 略微 - 也在涂层类型上。作为一种案例,考虑了直径200nm的硅球形颗粒。对于10nm涂层,最大能量密度增益与现有的石墨负极的最大值为13%,在负极中以40%重量分数的硅获得。高于60nm厚度,没有改善可以获得艺术石墨负极的状态。

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