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PAni-coated LiFePO 4 Synthesized by a Low Temperature Solvothermal Method

机译:低温溶剂热法合成钯包覆的LiFePO 4

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The composite LiFePO 4 /polyaniline was prepared by chemical synthesis to promote the intensification of the electrochemical properties for use as cathodes in lithium ion batteries. The X-ray diffraction (XRD) of LiFePO 4 synthesized by solvothermal method were indexed to the orthorhombic structure, according to the JCPDS 40-1499. The spectra Raman and FTIR showed a high degree of ordering of LiFePO 4 with interaction between LiFePO 4 surface with structure conjugate of conducting polymers. The cyclic voltammogram of the composite synthesized chemically showed a significant reduction in the value of Δ E p (Δ E p = 0.20 V) when compared to LiFePO 4 (Δ E p = 0.41 V), with lower charge transfer resistance values, indicating favoring electron transfer rate in the composite. Thus, the alternative synthesis route of the LiFePO 4 / PAni composite was easy to handle and allowed an increase in the electrochemical properties of the LiFePO 4 , compared to the traditional methods that require additional thermal treatments.
机译:通过化学合成来制备复合的LiFePO 4 /聚苯胺,以促进电化学性能的增强,以用作锂离子电池的阴极。根据JCPDS 40-1499,通过溶剂热法合成的LiFePO 4的X射线衍射(XRD)被标记为正交晶结构。光谱Raman和FTIR显示出LiFePO 4的高度有序性,以及LiFePO 4表面与导电聚合物的结构共轭物之间的相互作用。与LiFePO 4(ΔE p = 0.41 V)相比,化学合成的复合材料的循环伏安图显示ΔE p(ΔE p = 0.20 V)的值显着降低,电荷转移电阻值更低,表明有利复合物中的电子转移速率。因此,与需要额外热处理的传统方法相比,LiFePO 4 / PAni复合材料的替代合成路线易于处理,并且可以提高LiFePO 4的电化学性能。

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