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Effects of sulfuric acid treatment on the microstructure and electrochemical performance of a polyacrylonitrile (PAN)-based carbon anode

机译:硫酸处理对聚丙烯腈(PAN)基碳负极组织及电化学性能的影响

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摘要

To examine whether acid treatment of a non-graphitizing hard carbon influences positively or negatively its electrochemical anodic performance,this study reports the effects of sulfuric acid treatment on the microstructural changes and electrochemical performance of PAN-based hard carbons prepared at various temperatures.It was found that PAN-based hard carbons heat treated at 900 deg C (TAN9) exhibit an increased reversible capacity by up to ~20 and a decreased irreversible capacity by up to ~8 following the sulfuric acid treatment (TAN9S series).Since small changes in microstructure,except for slight reductions in surface area and crystallite size (L_a) value,were observed after sulfuric acid treatment,it was speculated that the capacity responses of samples in series TAN9S were due to the introduction of new functional groups such as -SO_3H and -SO_4H.As the newly introduced functional groups are strong acids but their conjugates (-SO_3 and -SO_4) are weak bases,those conjugates were thus considered to be able to react with Li~+ ion relatively weakly and reversibly.For PAN-based hard carbons heat treated at 1100 deg C (TAN11),there were much smaller changes,as compared with series TAN9S samples,in surface chemistry and microstructure by sulfuric acid treatment.Consequently,we observed an analogous but smaller influence of sulfuric acid oxidation on electrochemical performance.The samples from series TAN1 IS exhibited very stable cycling behavior.It was suggested that the acidity/basicity of surface functional groups may be an influential factor for improving the electrochemical performance of hard carbon-based anodic materials for lithium ion batteries.
机译:为探究酸处理对非石墨化硬质炭的电化学阳极性能有正向或负向影响,本文报道了硫酸处理对不同温度下制备的PAN基硬质炭的微观结构变化和电化学性能的影响。结果发现,在900°C(TAN9S系列)下热处理的PAN基硬炭的可逆容量增加了~20%,不可逆容量降低了~8%。由于硫酸处理后微观结构发生了微观变化,除表面积和晶粒尺寸(L_a)值略有减小外,推测TAN9S系列样品的容量响应是由于引入了-SO_3H和-SO_4H等新的官能团。由于新引入的官能团是强酸,但它们的共轭物(-SO_3和-SO_4)是弱碱,因此认为这些共轭物能够与Li~+离子相对弱和可逆地反应。在1100°C(TAN11)下热处理的PAN基硬炭样品,与TAN9S系列样品相比,硫酸处理的表面化学和微观结构变化要小得多。因此,我们观察到硫酸氧化对电化学性能的影响相似但较小。TAN1 IS系列的样品表现出非常稳定的循环行为。研究表明,表面官能团的酸度/碱度可能是提高锂离子电池用硬碳基阳极材料电化学性能的影响因素。

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