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首页> 外文期刊>Bulletin of the Korean Chemical Society >Growth and Electrochemical Behavior of Poly[Ni(saldMp)] on Carbon Nanotubes as Potential Supercapacitor Materials
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Growth and Electrochemical Behavior of Poly[Ni(saldMp)] on Carbon Nanotubes as Potential Supercapacitor Materials

机译:碳纳米管上聚[Ni(saldMp)]的生长和电化学行为作为潜在的超级电容器材料

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The polymer of (2,2-dimethyl-1,3-propanediaminebis(salicylideneaminato))-nickel(II), Ni(saldMp), was deposited on multi-walled carbon nanotubes (MWCNTs) substrate by the route of potential linear sweep. The nano structures of poly[Ni(saldMp)] have been obtained by adjusting the monomer concentration of 0.1, 0.2, 0.5, 1.0 and 1.5 mmol L−1. The poly[Ni(saldMp)] prepared in acetonitrile solution with monomer concentration of 1.0 mmol L−1 shows the fastest growth rate. The effects of potential window on charge-discharge efficiency and electrodeposition scan number on capacitance performance were discussed. Poly[Ni(saldMp)] prepared with less electrodeposition scans exhibits higher capacitance, but this goes against the improvement of the whole electrode capacitance. Sample with 8 deposition scans is the best compromise with the geometric specific capacitance 3.53 times as high as that of pure MWCNTs, and 1.24 times for the gravimetric specific capacitance under the test potential window 0.0-1.0 V.
机译:通过电位线性扫描的方法将(2,2-二甲基-1,3-丙二胺双(水杨酰亚胺))-镍(II)的聚合物Ni(saldMp)沉积在多壁碳纳米管(MWCNT)基板上。通过调节单体浓度为0.1、0.2、0.5、1.0和1.5 mmol L-1,可以获得聚[Ni(saldMp)]的纳米结构。乙腈溶液中单体浓度为1.0 mmol L-1的聚[Ni(saldMp)]的生长速度最快。讨论了电势窗口对充放电效率和电沉积扫描次数对电容性能的影响。用较少的电沉积扫描制备的聚[Ni(saldMp)]表现出较高的电容,但这不利于整个电极电容的改善。具有8个沉积扫描的样品是最佳的折衷方案,其几何比电容是纯MWCNT的3.53倍,重量比电容在测试电势窗口0.0-1.0 V下是1.24倍。

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