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Potential Reproducibility of Potassium-Selective Electrodes Having Perfluorinated Alkanoate Side Chain Functionalized Poly(3,4-ethylenedioxytiophene) as a Hydrophobic Solid Contact

机译:具有全氟烷醛酸酯侧链官能化聚(3,4-乙二氧基噻吩)的钾选择性电极的潜在再现性作为疏水性固体接触

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摘要

The irreproducibility of the standard potential (E degrees) is probably the last major challenge for the commercialization of solid-contact ion-selective electrodes (SCISEs) as single-use or wearable sensors. To overcome this issue, we are introducing for the first time a perfluorinated alkanoate side chain functionalized poly(3,4-ethylenedioxythiophene) (PEDOTF) as a hydrophobic SC in potassium-selective electrodes (K-SCISEs) based on plasticized poly(vinyl chloride). The SC incorporates the tetrakis(pentafluorophenyl)borate (TFAB(-)) anion, which is also present as a lipophilic additive in the ion-selective membrane (ISM), thus ensuring thermodynamic reversibility at the SC/ISM interface and improving the potential reproducibility of the electrodes. We show here that the PEDOTF-TFAB solid contact, which was prepolarized prior to the ISM deposition to either its half or fully conducting form (i.e. different oxidation states) in acetonitrile containing 0.01 M KTFAB, had a very stable open-circuit potential and an outstanding potential reproducibility of only +/- 0.5 mV (n = 6) for 1 h in the same solution after the prepolarization. This shows that the oxidation state of the highly hydrophobic PEDOTF-TFAB film (water contact angle 133 degrees) is stable over time and can be precisely controlled with prepolarization. The SC was also not light sensitive, which is normally a disadvantage of conducting polymer SCs. After the ISM deposition, the standard deviation of the E degrees of the K-SCISEs prepared on glassy carbon was +/- 3.0 mV (n = 5), which is the same as that for conventional liquid contact K-ISEs. This indicates that the ISM deposition is the main source for the potential irreproducibility of the K-SCISEs, which has been overlooked previously.
机译:标准电位(e度)的IRREoDuciacia是可能是固体接触离子选择性电极(SCRIS)作为单用或可穿戴传感器的近期主要挑战。为了克服这个问题,我们首次将全氟烷盐侧链官能化聚(3,4-亚乙二氧基噻吩)(PEDOTF)作为基于塑化的聚(氯乙烯的钾 - 选择性电极(K-Scies)的疏水Sc。 )。 SC包含四(五氟苯基)硼酸盐(TFAB( - ))阴离子,其在离子选择性膜(ISM)中也作为亲脂性添加剂存在,从而确保在SC / ISM界面处的热力学可逆性并提高潜在的再现性电极。我们在此显示Pedotf-TFAB固体触点,其在ISM沉积之前预先振荡,在含有0.01μmKTFab的乙腈中的其半或完全导电形式(即不同的氧化态),具有非常稳定的开路电位和一个在接受后,在相同的溶液中,仅+/- 0.5 mV(n = 6)的突出潜在再现性为1小时。这表明高疏水性Pedotf-TFAB膜(水接触角133度)的氧化状态随时间稳定,并且可以精确地控制预先控制。 SC也不光敏感,这通常是导电聚合物SCs的缺点。在ISM沉积之后,在玻璃碳上制备的k型k的标准偏差为+/- 3.0mV(n = 5),其与常规液体接触k的相同。这表明ISM沉积是k-scises潜在的潜在不可忽视的主要源的主要来源。

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  • 来源
    《Analytical chemistry》 |2019年第14期|共8页
  • 作者单位

    Budapest Univ Technol &

    Econ Dept Inorgan &

    Analyt Chem Chem Nanosensor Res Grp Szt Gellert Ter 4 H-1111 Budapest Hungary;

    Hungarian Acad Sci Chem Biol Res Grp Inst Organ Chem Res Ctr Nat Sci Magyar Tudosok Krt 2 H-1117 Budapest Hungary;

    Budapest Univ Technol &

    Econ Dept Inorgan &

    Analyt Chem Chem Nanosensor Res Grp Szt Gellert Ter 4 H-1111 Budapest Hungary;

    Abo Akad Univ Fac Sci &

    Engn Analyt Chem Lab Biskopsgatan 8 FIN-20500 Turku Finland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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