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Recent advances of bismuth based anode materials for sodium-ion batteries

机译:基于铋阳极材料的钠离子电池的最新进展

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Recent advances in Na-ion battery have made it more attractive and promising for large-scale energy storage. Emerging of Na-ion battery technology is closely associated to recent achievements in discovery of many suitable active materials, special capability of Na ion transportation, and of course the merits of abundance raw Na sources and environmental friendliness. Among all types of anode materials, bismuth-based anode materials, with a comparable theoretical specific capacity, as new high efficient electrode materials have sprung up for Na-ion batteries. However, the low electrical conductivity and fast capacity fading are still the two key challenges limiting their potential application. Great efforts have been devoted to mitigate these challenges and remarkable progresses have been achieved. In this mini-review, recent advances in bismuth-based materials as anode materials for Na-ion batteries are comprehensively reviewed with providing insights for the potential challenges in the development of bismuth-based materials for electrochemical energy storage devices.
机译:Na离子电池的最新进展使得大规模储能更具吸引力和有前途。 Na离子电池技术的新兴与近期发现许多合适的活性材料,Na离子运输特殊能力的成就密切相关,当然,丰富的原始Na来源和环境友好的优点。在所有类型的阳极材料中,基于铋的阳极材料,具有相当的理论特异性的阳极材料,因为新的高效电极材料被浇上Na离子电池。然而,低导电性和快速容量衰落仍然是限制其潜在应用的两个关键挑战。巨大的努力已经致力于减轻这些挑战,并且取得了显着的进展。在该迷你审查中,基于铋的材料的最近进步作为Na离子电池的阳极材料,通过为电化学能量存储装置的基于铋材料开发的潜在挑战进行了综合审查了洞察力。

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