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Face-centered-cubic lithium crystals formed in mesopores of carbon nanofiber electrodes

机译:碳纳米纤维电极的介孔中形成的面心立方锂晶体

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摘要

In the foreseeable future, there will be a sharp increase in the demand for flexible Li-ion batteries. One of the most important components of such batteries will be a freestanding electrode, because the traditional electrodes are easily damaged by repeated deformations. The mechanical sustainability of carbon-based freestanding electrodes subjected to repeated electrochemical reactions with Li ions is investigated via nanotensile tests of individual hollow carbon nanofibers (HCNFs). Surprisingly, the mechanical properties of such electrodes are improved by repeated electrochemical reactions with Li ions, which is contrary to the conventional wisdom that the mechanical sustainability of carbon-based electrodes should be degraded by repeated electrochemical reactions. Microscopic studies reveal a reinforcing mechanism behind this improvement, namely, that inserted Li ions form irreversible face-centered-cubic (FCC) crystals within HCNF cavities, which can reinforce the carbonaceous matrix as strong second-phase particles. These FCC Li crystals formed within the carbon matrix create tremendous potential for HCNFs as freestanding electrodes for flexible batteries, but they also contribute to the irreversible (and thus low) capacity of HCNFs.
机译:在可预见的将来,对柔性锂离子电池的需求将会急剧增加。这种电池最重要的组成部分之一就是独立式电极,因为传统的电极很容易因反复变形而损坏。通过对单个空心碳纳米纤维(HCNFs)的纳米拉伸测试,研究了与锂离子反复进行电化学反应的碳基独立式电极的机械可持续性。出人意料的是,通过与锂离子的重复电化学反应来改善这种电极的机械性能,这与传统的观点相反,即,基于碳的电极的机械可持续性应通过重复的电化学反应而降低,这是常规观点。微观研究揭示了这种改进背后的增强机制,即,插入的锂离子在HCNF腔内形成了不可逆的面心立方(FCC)晶体,可以将碳质基质增强为坚固的第二相颗粒。在碳基质中形成的这些FCC Li晶体为HCNF作为柔性电池的独立电极创造了巨大的潜力,但它们也导致HCNF的不可逆(因而低)容量。

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