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Comparison of Multi-walled Carbon Nanotubes and Poly(3-octylthiophene) as Ion-to-Electron Transducers in All-Solid-State Potassium Ion-Selective Electrodes

机译:全固态钾离子选择电极中多壁碳纳米管和聚(3-辛基噻吩)作为离子-电子换能器的比较

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摘要

Multi-walled carbon nanotubes (MWCNTs) were compared with poly(3-octylthiophene) (POT) as ion-to-electron transducer in all-solid-state potassium ion-selective electrodes with valinomycin-based ion-selective membranes. MWCNTs and POT were mixed with the other components of the potassium ion-selective membrane cocktail (valinomycin, KTpClPB, o-NPOE, PVC, THF) which was then applied on a glassy carbon (GC) substrate to prepare single-piece ion-selective electrodes (SPISEs). Results from potentiometric and impedance measurements showed that the MWCNT-based electrodes have a more reproducuible standard potential and a lower overall impedance than the electrodes based on POT. Both types of electrodes showed similar sensitivity to potassium ions and no redox sensitivity.
机译:将多壁碳纳米管(MWCNTs)与聚(3-辛基噻吩)(POT)作为具有基于瓦里霉素的离子选择膜的全固态钾离子选择电极中的离子-电子转换器。将MWCNT和POT与钾离子选择性膜混合物的其他成分(缬霉素,KTpClPB,邻-NPOE,PVC,THF)混合,然后将其应用于玻璃碳(GC)基质上以制备单片离子选择性电极(SPISE)。电位测量和阻抗测量的结果表明,与基于POT的电极相比,基于MWCNT的电极具有更高的可重复标准电势和更低的总体阻抗。两种类型的电极对钾离子均显示相似的敏感性,而对氧化还原则没有敏感性。

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