Development of Solid-Contact Potentiometric Sensor Utilized Nanocarbon-filled Poly (vinyl chloride) Membrane as Ion-to-electron Transducing Layer

Turyshev Es, Shpigun Lk, Kopytin Av, Zhizhin Ky, Kuznetsov Nt, Simonenko Np
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Abstract

Current fundamental researches in the field of potentiometry demonstrate the perspectives of using polymeric nanostructured materials as ion-to-electron transducers in Solid-Contact Potentiometric Sensors (SCSs). This paper reports the preparation and comparative study of plasticized Poly(Vinyl Chloride) (PVC) membranes modified with fullerene C60, single-walled carbon nanotubes SWCNTs, multiwalled carbon nanotubes, and graphene oxide as the transducing layer in SCSs for the determination of a common local anesthetic drug – procaine hydrochloride (Pro·HCl). As an ion-sensitive (recognizing) layer, a PVC membrane containing highly lipophilic 2-[bis-octadecyl sulfo]-closo-decaborate anions was chosen. The results were discussed in relation to nanofiller’s type and content. The best potentiometric characteristics were obtained for the sensor with the transducing layer containing the hybrid nanofiller SWCNTs/C60. This new sensor of a double-layer PVC membrane configuration exhibited a Nernstian slope (59.2 ± 0.2 mV/decade) in the wide linear range (5×10-7– 1×10-2 M) with the low limit of detection (10-7.1 M), fast response time (≤ 7 s), and stable potentiometric response (drift potential ± 0.27 mV h-1 over 7 h of soaking in 1x10-5 M Pro·HCl solution).
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利用纳米碳填充聚氯乙烯膜作为离子-电子转导层的固体接触电位传感器的研制
目前在电位测量领域的基础研究表明,在固体接触电位传感器中使用聚合物纳米结构材料作为离子-电子换能器是有前景的。本文报道了以富勒烯C60、单壁碳纳米管SWCNTs、多壁碳纳米管和氧化石墨烯为传导层的增塑聚氯乙烯(PVC)膜的制备和比较研究,用于测定常见局麻药物盐酸普鲁卡因(Pro·HCl)。作为离子敏感(识别)层,我们选择了一种含有高亲脂性2-[双十八烷基磺]-近癸酸阴离子的PVC膜。研究结果与纳米填料的种类和含量有关。采用混合纳米填料SWCNTs/C60的传感器具有最佳的电位特性。该传感器采用双层PVC膜结构,线性范围宽(5×10-7 - 1×10-2 M),检测限低(10-7.1 M),响应时间短(≤7 s),电位响应稳定(在1x10-5 M Pro·HCl溶液中浸泡7 h,漂移电位±0.27 mV h-1),斜率为59.2±0.2 mV/decade。
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