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Octahedral Tin Dioxide Nanocrystals Anchored on Vertically Aligned Carbon Aerogels as High Capacity Anode Materials for Lithium-Ion Batteries

机译:八面体二氧化锡纳米晶体锚固在垂直排列的碳气凝胶上作为锂离子电池的高容量阳极材料

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摘要

A novel binder-free graphene - carbon nanotubes - SnO2 (GCNT-SnO2) aerogel with vertically aligned pores was prepared via a simple and efficient directional freezing method. SnO2 octahedrons exposed of {221} high energy facets were uniformly distributed and tightly anchored on multidimensional graphene/carbon nanotube (GCNT) composites. Vertically aligned pores can effectively prevent the emersion of “closed” pores which cannot load the active SnO2 nanoparticles, further ensure quick immersion of electrolyte throughout the aerogel, and can largely shorten the transport distance between lithium ions and active sites of SnO2. Especially, excellent electrical conductivity of GCNT-SnO2 aerogel was achieved as a result of good interconnected networks of graphene and CNTs. Furthermore, meso- and macroporous structures with large surface area created by the vertically aligned pores can provide great benefit to the favorable transport kinetics for both lithium ion and electrons and afford sufficient space for volume expansion of SnO2. Due to the well-designed architecture of GCNT-SnO2 aerogel, a high specific capacity of 1190 mAh/g with good long-term cycling stability up to 1000 times was achieved. This work provides a promising strategy for preparing free-standing and binder-free active electrode materials with high performance for lithium ion batteries and other energy storage devices.
机译:通过一种简单有效的定向冻结方法,制备了一种新型的无粘合剂的石墨烯-碳纳米管-SnO2(GCNT-SnO2)气凝胶,该气凝胶具有垂直排列的孔。 {221}高能面暴露的SnO2八面体均匀分布并紧密锚固在多维石墨烯/碳纳米管(GCNT)复合材料上。垂直排列的孔可以有效防止“封闭”孔的出现,这些孔无法加载活性SnO2纳米颗粒,还可以确保电解质快速浸入气凝胶中,并且可以大大缩短锂离子与SnO2活性位之间的传输距离。尤其是,由于石墨烯和CNT的良好互连网络,GCNT-SnO2气凝胶具有出色的导电性。此外,由垂直排列的孔产生的具有大表面积的中孔和大孔结构可为锂离子和电子的良好传输动力学提供极大的好处,并为SnO2的体积膨胀提供足够的空间。由于GCNT-SnO2气凝胶的结构设计良好,因此可实现1190 mAh / g的高比容量以及高达1000倍的良好长期循环稳定性。这项工作为制备用于锂离子电池和其他储能设备的高性能,独立且无粘结剂的活性电极材料提供了一种有希望的策略。

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