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Poly(3-butylthiophene)-based positive-temperature-coefficient electrodes for safer lithium-ion batteries

机译:基于聚(3-丁基噻吩)的正温度系数电极,用于更安全的锂离子电池

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A new positive temperature coefficient (PTC) electrode is prepared simply by coating a thin layer of redox-active poly (3-butylthiophene) (P3BT) in between the electroactive Li[Ni0.5Co0.2Mn0.3]O-2 [523] layer and the Al foil substrate to improve the safety of lithium-ion batteries. The experimental results demonstrate that the electrical conductivity of the PF6 -doped P3BT decreases sharply at 120-150 degrees C, showing a remarkable PTC effect. As for the P3BT-523 composite electrodes, a rate capacity nearly reaching the reference electrode is obtained at less than 1C rate, while the rate discharge capacities increase obviously with the decrease of the P3BT solution concentration. Moreover, after being exposed to 150 degrees C for 5 min, the P3BT-523 composite electrodes are hardly discharged and the discharge voltage of the composite electrodes drop drastically below the cut-off voltage at a current density of 3 C, suggesting an effective thermal shutdown switch for lithium-ion batteries. (C) 2015 Elsevier Ltd. All rights reserved.
机译:只需在电活性Li [Ni0.5Co0.2Mn0.3] O-2之间涂覆一层氧化还原活性聚(3-丁基噻吩)(P3BT)薄层即可制备新的正温度系数(PTC)电极[523]层和铝箔基板,提高了锂离子电池的安全性。实验结果表明,掺有PF6的P3BT的电导率在120-150摄氏度时急剧下降,显示出显着的PTC效应。对于P3BT-523复合电极,在小于1C的速率下可获得接近参考电极的速率容量,而速率放电容量则随着P3BT溶液浓度的降低而明显增加。此外,在150摄氏度下暴露5分钟后,P3BT-523复合电极几乎不放电,并且复合电极的放电电压在3 C的电流密度下急剧下降到截止电压以下,这表明有效的散热锂离子电池的关机开关。 (C)2015 Elsevier Ltd.保留所有权利。

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