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新型介孔硅@碳微球作为锂离子电池的阳极。

Novel mesoporous Si@C microspheres as anodes for lithium-ion batteries.

机构信息

Department of Chemistry, Tongji University, 1239 Siping Road, Shanghai 200092, P. R. China.

出版信息

Phys Chem Chem Phys. 2014 Mar 7;16(9):4135-42. doi: 10.1039/c3cp54507e.

Abstract

In this paper, we demonstrate the design and synthesis of novel mesoporous Si@C microspheres as anode materials for high-performance lithium-ion batteries. SiO2 nanoparticles modified with hexadecyl trimethyl ammonium bromide are enveloped within resorcinol-formaldehyde polymer microspheres which form in the ethanol-water-ammonia system. Mesoporous voids between Si nanoparticles and the carbon framework are generated after carbonization at 800 °C and magnesiothermic reduction at 650 °C. The resultant Si@C microspheres show regular spherical shapes with a mean diameter of about 500 nm, a mesopore size of 3.2 nm and specific surface areas of 401-424 m(2) g(-1). Mesoporosity of Si@C microspheres effectively buffers the volume expansion/shrinkage of Si nanoparticles during Li ion insertion/extraction, which endows mesoporous Si@C microspheres with excellent electrochemical performance and cycle stability when they are used as lithium-ion battery anode materials. A typical sample of mesoporous Si@C microspheres presents a specific capacity of 1637 and 1375 mA h g(-1) at first discharge and charge under a current density of 50 mA g(-1). After 100 cycles, the charge capacity remains 1053 mA h g(-1) with a coulombic efficiency of 99%, showing good cycle stability of the anode. This finding highlights the potential application of mesoporous Si@C microspheres in lithium-ion battery anode materials.

摘要

本文展示了新型介孔 Si@C 微球的设计和合成,该微球可用作高性能锂离子电池的阳极材料。十六烷基三甲基溴化铵修饰的 SiO2 纳米粒子被包裹在在乙醇-水-氨体系中形成的间苯二酚-甲醛聚合物微球内。经过 800°C 碳化和 650°C 镁热还原,在 Si 纳米粒子和碳骨架之间产生了介孔空隙。所得的 Si@C 微球呈现出规则的球形,平均直径约为 500nm,介孔尺寸为 3.2nm,比表面积为 401-424m2g-1。Si@C 微球的介孔性有效地缓冲了锂离子插入/提取过程中 Si 纳米粒子的体积膨胀/收缩,当用作锂离子电池的阳极材料时,介孔 Si@C 微球表现出优异的电化学性能和循环稳定性。典型的介孔 Si@C 微球样品在 50mA g-1的电流密度下首次放电和充电时的比容量分别为 1637 和 1375mA h g-1。经过 100 次循环后,充电容量保持在 1053mA h g-1,库仑效率为 99%,显示出良好的阳极循环稳定性。这一发现突显了介孔 Si@C 微球在锂离子电池阳极材料中的潜在应用。

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