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A Review of Carbon-Based Materials for Safe Lithium Metal Anodes

机译:安全锂金属阳极碳基材料的研究进展

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The lithium metal is a promising anode material with extremely high theoretical specific capacity (3860 mA h g-1), low density (0.59 g cm-3), and the lowest negative electrochemical potential (-3.04 V vs. the standard hydrogen electrode). However, uncontrollable Li dendrites growth leads to the short lifespan and catastrophic safety hazards, restricting its practical application over the past many years. With those challenges, some effective strategies have been adopted, including electrolyte modification, introducing a protective layer, nanostructured anodes, and membrane modification. The carbon-based materials have been demonstrated to obviously address the challenge of Li dendrites. In this review, the carbon-based materials were discussed in details for their application and challenges in lithium metal anodes protection. In addition, the applications of lithium anode with carbon-based materials were summarized for Li-S batteries and Li-O2 batteries.
机译:锂金属是一种很有前途的阳极材料,具有极高的理论比容量(3860 mA h g-1),低密度(0.59 g cm-3)和最低的负电化学势(相对于标准氢电极为-3.04 V) 。然而,不可控制的锂树枝状晶体的生长导致寿命短和灾难性的安全隐患,限制了其在过去多年的实际应用。面对这些挑战,采取了一些有效的策略,包括电解质改性,引入保护层,纳米结构阳极和膜改性。事实证明,碳基材料显然可以解决锂树枝状晶体的挑战。在这篇综述中,对碳基材料在锂金属阳极保护中的应用和挑战进行了详细讨论。此外,总结了锂阳极与碳基材料在锂硫电池和锂氧电池中的应用。

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