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The effect of metallic coatings and crystallinity on the volume expansion of silicon during electrochemical lithiation/delithiation

机译:电化学锂化/脱锂过程中金属涂层和结晶度对硅体积膨胀的影响

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Applying surface coatings to alloying anodes for Li-ion batteries can improve rate capability and cycle life, but it is unclear how this second phase affects mechanical deformation during electrochemical reaction. Here, in-situ transmission electron microscopy is employed to investigate the electrochemical lithiation and delithiation of silicon nanowires (NWs) with copper coatings. When copper is coated on only one sidewall, the NW bilayer structure bends during delithiation due to length changes in the silicon. Tensile hoop stress causes conformal copper coatings to fracture during lithiation without undergoing bending deformation. In addition, in-situ and ex-situ observations indicate that a copper coating plays a role in suppressing volume expansion during lithiation. Finally, the deformation characteristics and dimensional changes of amorphous, polycrystalline, and single-crystalline silicon are compared and related to observed electrochemical behavior. This study reveals important aspects of the deformation process of silicon anodes, and the results suggest that metallic coatings can be used to improve rate behavior and to manage or direct volume expansion in optimized silicon anode frameworks.
机译:在锂离子电池的合金阳极上施加表面涂层可以提高倍率能力和循环寿命,但是尚不清楚第二相如何影响电化学反应期间的机械变形。在这里,原位透射电子显微镜用于研究具有铜涂层的硅纳米线(NWs)的电化学锂化和去锂化。当仅在一个侧壁上涂覆铜时,由于硅的长度变化,在去磁期间NW双层结构会弯曲。拉伸环向应力使共形的铜涂层在锂化过程中破裂而不发生弯曲变形。此外,现场和非现场观察表明,铜涂层在抑制锂化过程中的体积膨胀中起着作用。最后,比较非晶硅,多晶硅和单晶硅的变形特性和尺寸变化,并将其与观察到的电化学行为相关。这项研究揭示了硅阳极变形过程的重要方面,结果表明金属涂层可用于改善速率行为,并在优化的硅阳极框架中管理或指导体积膨胀。

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