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Investigation on the role of different conductive polymers in supercapacitors based on a zinc sulfide/reduced graphene oxide/conductive polymer ternary composite electrode

机译:基于硫化锌/氧化锌氧化物/导电聚合物三元复合电极的超级电容器不同导电聚合物在超级电容器中的作用研究

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Conductive polymers, such as polyaniline (PANI), polypyrrole (PPy), polythiophene (PTh) and poly 3,4-ethylenedioxythiophene (PEDOT), play an important role in the application of pseudocapacitors. It is necessary to explore the effects of different conductive polymers in electrode composites. Herein, we prepare zinc sulfide/reduced graphene oxide (ZnS/RGO) by the hydrothermal method, and conductive polymers (PANI, PPy, PTh and PEDOT) doped with the same mass ratio (polymer to 70 wt%) via in situ polymerization on the surface of ZnS/RGO composite. For the supercapacitor application, the ZnS/RGO/PANI ternary electrode composite possesses the best capacitance performance and cycle stability out of all of the polymer-coated ZnS/RGO composites. In the three-electrode system, the discharge specific capacitance and cycle stability of ZnS/RGO/PANI are 1045.3 F g ~(?1) and 160% at 1 A g ~(?1) after 1000 loops. In a two-electrode symmetric system, the discharge specific capacitance and cycle stability of ZnS/RGO/PANI are 722.0 F g ~(?1) and 76.1% at 1 A g ~(?1) after 1000 loops, and the greatest energy and power density of the ZnS/RGO/PANI electrode are 349.7 W h kg ~(?1) and 18.0 kW kg ~(?1) . In addition, conductive polymers can effectively improve the voltage range of the electrode composites in 6 M KOH electrolyte for the two-electrode system. The discharge voltage ~1.6 V makes them promising electrode materials for supercapacitors.
机译:导电聚合物,如聚酰氯(PANI),聚吡咯(PPY),聚噻吩(PTH)和聚3,4-乙二氧基噻吩(PEDOT),在伪偶联器的应用中起重要作用。有必要探讨不同导电聚合物在电极复合材料中的影响。在此,我们通过水热法制备硫化锌/还原的氧化铟烯氧化物(ZnS / Rgo),并通过原位聚合掺杂具有相同质量比(聚合物至70wt%)的导电聚合物(Pani,PPY,PTH和PEDOT) ZnS / RGO复合材料的表面。对于超级电容器应用,ZnS / Rgo / PANI三元电极复合材料具有所有聚合物涂覆的ZnS / Rgo复合材料的最佳电容性能和循环稳定性。在三个电极系统中,在1000环之后,ZnS / Rgo / PANI的放电特定电容和循环稳定性为1045.3f g〜(α1),160%,在1 a g〜(Δ1)下。在双电极对称系统中,ZnS / RGO / PANI的放电比电容和循环稳定性为722.0f g〜(α1)和在1000次环的1 a g〜(Δ1)的76.1%,以及最大的能量ZnS / Rgo / PANI电极的功率密度为349.7WH kg〜(α1)和18.0kW kg〜(?1)。另外,导电聚合物可以有效地改善用于双电极系统6M KOH电解质中电极复合材料的电压范围。放电电压〜1.6 V使其具有超级电容器的有希望的电极材料。

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