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Electrochemical Characterization of Si/AI Multilayer Thin Film Anode Materials for High Energy Lithium Secondary Batteries

机译:高能锂二次电池Si / Al多层薄膜阳极材料的电化学表征

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Nanostructured silicon is a promising material for high capacity anodes in lithium batteries, offering a specific capacity an order of magnitude beyond conventional graphite. But the large volume change of silicon during lithiation and delithiation and the resulting poor cyclability has prevented its commercial application. Herein, we report Si/Al multilayer thin film electrodes which are deposited on a Ni substrate by alternate sputtering of Si and Al at room temperature. Si/Al multilayer thin films are prepared using an RF magnetron sputtering method, and their potential use as anode materials for rechargeable lithium-ion batteries is investigated. The insertion of the Al layer into the Si layer improves the cycling performance. Si/Al multilayer thin films show an amorphous structure. The electrochemical characteristics of Si/Al multilayer film electrode can be controlled by the thickness, and number of stacked Si layers. Our prepared multilayer structures provided a promising research platform that may eventually lead to an optimized anode structure for advanced rechargeable lithium secondary batteries.
机译:纳米结构硅是锂电池中高容量阳极的有前途的材料,比容量比常规石墨高一个数量级。但是硅在锂化和脱锂期间的大量变化以及由此导致的差的可循环性阻碍了其商业应用。在此,我们报道了通过在室温下交替溅射Si和Al而在Ni衬底上沉积的Si / Al多层薄膜电极。使用射频磁控溅射法制备Si / Al多层薄膜,并研究了其作为可再充电锂离子电池负极材料的潜在用途。将Al层插入Si层中改善了循环性能。 Si / Al多层薄膜显示出非晶结构。 Si / Al多层膜电极的电化学特性可以通过厚度和堆叠的Si层的数量来控制。我们准备的多层结构提供了一个有前途的研究平台,最终可能会为高级可充电锂二次电池带来优化的阳极结构。

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