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Synthesis and electrochemical properties of polyradical cathode material for lithium second batteries

机译:锂二次电池用多自由基正极材料的合成及电化学性能

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A stable polyradical, poly (2,2,6,6-tetramethylpiperidinyloxy methacrylate)(PTMA), was synthesized, and its structure was determined by infrared, ultraviolet-visible, and ESR spectroscopy. Cyclic voltammograms of the PTMA polyradical electrodes were obtained by using a three-electrode cell at a scan rate of 5 mV/s within a potential range of 3.2-4.0 V. The results show that the shape of oxidation peak is very similar to that of reduction peak, and oxidation peak current is equal to the corresponding reduction peak current, which suggest that PTMA possesses an excellent reversibility. The difference of the anodic peak potential (E_(a,p) = 3.66 V, vs Li/Li~+) and ca-thodic peak potential(E_(c,p) = 3. 58 V, vs Li/Li~+) is estimated at 80 mV, which is extremely less than that of the other organic positive materials in lithium second batteries such as organosulfide compounds, leading to a capability for high current capability in the charging and discharging process of the battery. The maximum discharge specific capacity of PTMA is 78. 4 mA · h/g at the constant discharge current of 0.3 mA (0.2 C rate) , the coulombic efficiency is about 95%, and the charging and discharging curves of the batteries have an obvious plateau at 3.65 V and 3.56 V, respectively. The discharging specific capacity of the battery decreased is about 2% after 100 cycles. The PTMA /Li button batteries exhibite an excellent stability.
机译:合成了一种稳定的聚自由基聚(甲基丙烯酸2,2,6,6-四甲基哌啶氧基氧基)(PTMA),并通过红外,紫外可见和ESR光谱确定了其结构。通过使用三电极电池在3.2-4.0 V的电位范围内以5 mV / s的扫描速率获得PTMA多自由基电极的循环伏安图。结果表明,氧化峰的形状与还原峰,并且氧化峰电流等于相应的还原峰电流,这表明PTMA具有出色的可逆性。阳极峰值电势(E_(a,p)= 3.66 V,vs Li / Li〜+)和阴极峰值电势(E_(c,p)= 3. 58 V,vs Li / Li〜+ )估计为80 mV,这远远小于锂二次电池中的其他有机正极材料(例如有机硫化物)的正电势,从而在电池的充电和放电过程中具有高电流能力。在0.3 mA(0.2 C速率)的恒定放电电流下,PTMA的最大放电比容量为78. 4 mA·h / g,库仑效率约为95%,并且电池的充电和放电曲线具有明显的分别在3.65 V和3.56 V时保持稳定。 100次循环后,电池的放电比容量下降约2%。 PTMA / Li纽扣电池具有出色的稳定性。

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