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Single-walled carbon nanotube-induced crystallinity on the electropolymeric film of tetraaminophthalocyaninatonickel(II) complex: impact on the rate of heterogeneous electron transfer

机译:四氨基酞菁(II)配合物电聚合物膜上的单壁碳纳米管诱导结晶度:对异质电子转移速率的影响

摘要

We present a fundamental investigation on the impact of single-walled carbon nanotube (SWCNT) on the film structure and redox behaviour of tetraaminophthalocyaninatonickel(II) complex (NiTAPc) electropolymer immobilized on a basal plane pyrolytic graphite electrode (BPPGE). SWCNT induces crystallinity on the NiTAPc electropolymeric film structure and increases its apparent electron transfer rate constant (kapp). We proved that there is potential advantage of using electrode based on the SWCNT-poly-NiTAPc hybrid for catalytic and sensing applications as it enhances the catalytic current for the detection of nitric oxide more than twice compared to bare BPPGE, BPPGE-SWCNT and other electrodes without SWCNTs.
机译:我们目前对单壁碳纳米管(SWCNT)对固定在基平面热解石墨电极(BPPGE)上的四氨基酞菁氰基镍钛(II)络合物(NiTAPc)电聚合物的薄膜结构和氧化还原行为的影响进行基础研究。 SWCNT会在NiTAPc电聚合膜结构上引起结晶,并增加其表观电子传输速率常数(kapp)。我们证明,将基于SWCNT-poly-NiTAPc混合电极的电极用于催化和传感应用具有潜在的优势,因为与裸露的BPPGE,BPPGE-SWCNT和其他电极相比,其将一氧化氮检测的催化电流提高了两倍以上没有SWCNT。

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