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首页> 外文期刊>ACS Omega >Thin and Flexible Ion Sensors Based on Polyelectrolyte Multilayers Assembled onto the Carbon Adhesive Tape
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Thin and Flexible Ion Sensors Based on Polyelectrolyte Multilayers Assembled onto the Carbon Adhesive Tape

机译:碳膜胶带上基于聚电解质多层薄膜的薄而灵活的离子传感器

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摘要

A novel flexible ion-selective sensor for potassium and sodium detection was proposed. Flexible ion-selective electrodes with pseudo-liquid internal solution on contrary to the system with a solid contact provided a more stable analytical signal. Such advantages were achieved because of polyelectrolyte (PEI/PSS) layers adsorption on the conduct substrate with a layer-by-layer technique. Such an approach demonstrated that ion-selective electrodes save sensitivity with Nernstian dependence: 56.2 ± 1.4 mV/dec aNa+ and 56.3 ± 1.9 mV/dec aK+, as well as a fast time of response for potassium (5 s) and sodium (8 s) was shown. The sensing platform proposed demonstrates a better time of response and is close to the Nernstian value of sensitivity with a sensor low cost. The results proposed confirm a pseudo-liquid junction for the ion-selective electrode. Biocompatibility of an ion-selective sensing platform was demonstrated at potassium potentiometric measurements in Escherichia coli biofilms. Potassium levels in a biofilm were measured with potentiometry and showed agreement with the previous results.
机译:提出了一种用于钾和钠检测的新型柔性离子选择性传感器。与具有固体接触的系统相反,具有伪液体内部溶液的柔性离子选择电极提供了更稳定的分析信号。由于采用逐层技术将聚电解质(PEI / PSS)层吸附在导电基板上,因此实现了这些优势。这样的方法证明离子选择电极可节省能斯特依赖性的灵敏度:56.2±1.4 mV / dec aNa +和56.3±1.9 mV / dec aK +,以及对钾(5 s)和钠(8 s)的快速响应时间)。所提出的传感平台展示了更好的响应时间,并且接近于传感器的Nernstian值,且传感器成本较低。提出的结果证实了离子选择电极的拟液结。离子选择性传感平台的生物相容性在大肠杆菌生物膜的钾电位测量中得到了证明。用电位计测量生物膜中的钾水平,并与先前的结果一致。

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