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Harnessing the Unique Features of 2D Materials toward Dendrite-free Metal Anodes

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摘要 Electrochemically active metal anodes,such as lithium,sodium,potassium,and zinc,have attracted great research interests in the advanced rechargeable batteries owing to their superior theoretical energy densities.Unfortunately,the metal anodes suffer from the huge volume changes with loss of active materials during the plating and stripping processes,resulting in fast capacity decay.Moreover,the random growth of dendrites on the metal anodes will penetrate the separator,causing severe safety issues.Engineering metal anodes by introducing the 2D materials are widely investigated to alleviate these issues.Benefitting from the ultrathin structure feature and unique electrical properties,2D materials are regarded as one of the best host of metal anodes.Besides,the tunable active sites on basal plane enable 2D materials to achieve favorable interaction with metal anodes.Moreover,some 2D materials exhibit good mechanical strength and flexibility,serving as building block for the artificial solid electrolyte interphase.In this review,we mainly disclosed the correlations between the intrinsic properties of 2D materials and their functions in guiding uniform nucleation,controlling the growth of metals,and accommodating the volume change.Also,the challenges of 2D materials in metal anodes are well discussed.Finally,the future directions to develop highperformance metal anodes by taking advantage of these unique features of 2D materials are proposed.
出处 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2022年第1期45-67,共23页 能源与环境材料(英文)
基金 financialy supported by the National Natural Science Foundation of China (grant number,52072014, 52002012) the financial support from China Postdoctoral Science Foundation (2020M670090 and 2020TQ0022) National Postdoctoral Program for Innovative Talents (BX20200027 and BX20200037)
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