聚苯乙烯
材料科学
聚合物
拉曼光谱
热分解
化学工程
碳纤维
电化学
热解
复合数
透射电子显微镜
粒径
石墨
无定形固体
比表面积
扫描电子显微镜
复合材料
化学
有机化学
纳米技术
物理化学
催化作用
电极
工程类
物理
光学
作者
Yao-Hong Nien,James R. Carey,Jenn‐Shing Chen
标识
DOI:10.1016/j.jpowsour.2009.04.013
摘要
The goal of this research was to study the effect of various polymer-containing precursors on the performance of LiFePO4/C composite. A coprecipitation method was applied to prepare a series of LiFePO4/C materials by calcinating amorphous LiFePO4 with various polymer compounds at 600 °C. The materials were characterized by X-ray diffraction, scanning electron microscopy, transmission electron microscopy, particle size analysis, thermal analysis, BET specific surface area, Raman spectral analysis and electrochemical methods. The results showed that the structure of polymer precursors played an important role in improving the performance of LiFePO4/C composites. The residual carbon produced by the pyrolysis of polymers with functionalized aromatic groups exhibited a better capacity in the LiFePO4/C composites. A polyaromatic compound, e.g. polystyrene, with more functionalized aromatic groups displayed improved performance because its decomposition temperature was close to the temperature of the LiFePO4 phase transformation, which resulted in fine particle size and uniform carbon distribution on the composite surface. According to Raman spectral analysis, polystyrene with more aromatic groups has a lower ID/IG and sp3/sp2 peak ratio indicating more highly graphite-like carbon formation during polymer pyrolysis and exhibited a better capacity.
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