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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A simple method to encapsulate SnSb nanoparticles into hollow carbon nanofibers with superior lithium-ion storage capability
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A simple method to encapsulate SnSb nanoparticles into hollow carbon nanofibers with superior lithium-ion storage capability

机译:一种简单的方法,将SNSB纳米粒子封装成具有优异锂离子储存能力的中空碳纳米纤维

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摘要

The practical use of high-capacity anodes in lithium-ion batteries generally suffers from significant volume changes upon lithium insertion and extraction. The volume changes induce cracks and loss of inter-particle electronic contact in the electrode, resulting in rapid capacity decay. The use of fiber-like materials to prevent cracks and accommodate volume changes is widely observed in many animal and human activities. Birds mix grass and feathers into mud to build nests, and humans in ancient times blended straw with mud to produce adobe bricks for housing construction. In view of this point, this research designed a porous nanofiber structure to resolve the unstable structure problem of anode materials. The three-dimensional network structure composed of nanofibers provides a highly elastic matrix to accommodate the volume changes of high-capacity Sn and Sb particles and pores around the active particles, induced by CO2 evolution, serve as an additional buffer zone for the volume changes. This unique structure prepared by using a new SnSb alloy precursor and a simple electrospinning technique leads to excellent lithium storage performance in terms of energy density, cycling stability, and rate capability.
机译:高容量阳极在锂离子电池中的实际用途通常患有锂插入和萃取的大量变化。体积改变诱导电极中粒子间电子接触的裂缝和损耗,从而快速容量衰减。在许多动物和人类活动中广泛观察到使用纤维状材料以防止裂缝和容纳体积变化。鸟儿将草和羽毛混合到泥中,以在古代的巢穴中融合巢穴与泥浆用泥制成泥浆,为住房建设生产Adobe砖。鉴于这一点,该研究设计了一种多孔纳米纤维结构,用于解决阳极材料的不稳定结构问题。由纳米纤维组成的三维网络结构提供了高度弹性基质以适应由CO 2进化诱导的活性颗粒的高容量Sn和Sb颗粒的体积变化,并用作体积变化的附加缓冲区。这种独特的结构通过使用新的SNSB合金前体和简单的静电纺丝技术制备,在能量密度,循环稳定性和速率能力方面导致优异的锂储存性能。

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    Fiber and Polymer Science Program Department of Textile Engineering Chemistry end Science North Carolina State University Raleigh NC 27695-8301 USA;

    Fiber and Polymer Science Program Department of Textile Engineering Chemistry end Science North Carolina State University Raleigh NC 27695-8301 USA;

    Department of Chemistry and Biochemistry Arizona State University Tempe AZ 85287-1604 USA;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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