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Electropolymerized hydrophobic polyazulene as solid-contacts in potassium-selective electrodes

机译:电聚合疏水性聚氮杂苯在钾选择电极中的固相接触

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Electropolymerized hydrophobic polyazulene (PAz) based solid-state potassium ion-selective electrodes (SC-ISEs) have been characterized in terms of their suitability for clinical application. Polarization of the PAz solid contact before applying the plasticised poly(vinyl chloride) based K+-selective membrane was implemented as a convenient approach to address the general problem of the irreproducible standard potential (E-0) of SC-ISEs. Using this method, the E-0 reproducibility among different electrodes was, in the worst case, +/- 7.9 mV (n = 4). The effectiveness of the redox buffer-free approach presented here in stabilizing E0 is strengthened by the absence of light, oxygen and carbon dioxide sensitivity of the PAz SC-ISEs. No evidence was found for the formation of an aqueous layer for the PAz-based SC-ISEs. Thus the hydrophobic carbon structure of PAz having a water contact angle of 98 +/- 11 degrees, which is slightly higher than that for graphene, can apparently efficiently counteract the aqueous layer formation. In terms of the specific application, the PAz solid contact ISEs were found to show a remarkably good potential stability at their first contact with an aqueous sample. We also confirmed that the PAz-based SC-ISEs can be used for the accurate determination of the K+ concentration in serum solutions. Overall, the PAz solid contact shows significant advantages as compared to the state-of-the-art of electrically conducting polymer based SC-ISEs.
机译:基于电聚合疏水性聚azulene(PAz)的固态钾离子选择性电极(SC-ISEs)已针对其在临床上的适用性进行了表征。在应用基于增塑的聚氯乙烯的K +选择性膜之前,对PAz固体接触进行极化是一种方便的方法,可以解决SC-ISEs不可再现的标准电势(E-0)的一般问题。使用这种方法,在最坏的情况下,不同电极之间的E-0再现性为+/- 7.9 mV(n = 4)。 PAz SC-ISE对光,氧和二氧化碳的敏感性不强,从而增强了此处稳定E0的无氧化还原无缓冲方法的有效性。没有发现形成基于PAz的SC-ISE的水层的证据。因此,PAz的疏水性碳结构的水接触角为98 +/- 11度(略高于石墨烯),显然可以有效地抵消水层的形成。在特定应用方面,发现PAz固体接触ISE在与水性样品首次接触时显示出非常好的电位稳定性。我们还证实,基于PAz的SC-ISE可用于准确测定血清溶液中的K +浓度。总体而言,与基于导电聚合物的SC-ISE的最新技术相比,PAz固体触点具有明显的优势。

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