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Recent Advances in Heterostructured Anode Materials with Multiple Anions for Advanced Alkali-Ion Batteries

机译:异质化阳极材料的最新进展,具有多种阴离子的先进碱性离子电池

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As rechargeable battery technology continues to advance, the development of advanced electrode materials is becoming increasingly crucial to meet the emerging demand for electrochemical energy storage devices with higher energy and power densities. However, progress in anode materials has been sluggish and graphite is still widely applied in commercial rechargeable batteries. Alloying and conversion reaction-based anode materials, including Si, Sn, metal oxides, and metal chalcogenides, have been widely investigated as they exhibit much higher theoretical capacities than carbonaceous materials. However, they exhibit several intrinsic limitations, such as large volume change, low electrical conductivity, and high voltage hysteresis. Recently, the construction of heterostructures for anode materials has received increasing attention as it is an effective strategy to greatly enhance the capacity and rate performance by forming built-in electric fields at the heterointerfaces, which can lower the activation energy for surface reactions. This review introduces the recent progress in the development of heterostructured anode materials with an emphasis on metal compounds with multiple anions and various interpretations of the origin of their superior electrochemical properties in rechargeable alkali-ions (Li+, Na+, and K+) batteries. The challenges and future outlook of advanced heterostructured anode materials research are discussed at the end of this review.
机译:随着可充电电池技术继续前进,先进电极材料的发展越来越重要,以满足具有更高能量和功率密度的电化学能量存储装置的新兴需求。然而,阳极材料的进展已经缓慢并且石墨仍然广泛应用于商业可充电电池。已广泛研究了包括Si,Sn,金属氧化物和金属硫芥子的基于合金和转化反应的阳极材料,因为它们表现出比碳质材料更高的理论能力。然而,它们表现出几种内在限制,例如大的体积变化,低导电性和高压滞后。最近,阳极材料的异质结构的构建已经增加了越来越多的关注,因为它是通过在异待饲料的内外形成电场来大大提高容量和速率性能的有效策略,这可以降低表面反应的活化能量。本综述介绍了近期性阳极材料的开发进展,重点是具有多阴离子的金属化合物和可充电碱 - 离子(Li +,Na +和K +)电池中的优异电化学性质的起源的各种解释。在本次审查结束时讨论了先进的异性结构阳极材料研究的挑战和未来展望。

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