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Development of Potentiometric Phenol Sensors by Nata de Coco Membrane on Screen-Printed Carbon Electrode

机译:Nata de Coco膜在丝网印刷碳电极上的电位酚传感器的开发

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摘要

Nata de coco, a bacterial cellulose as a result of coconut water fermentation, is a conductive polymer with a electrical conductivity of 553 μS/cm and has high mechanical stability. In this study, nata de coco was used as a supporting membrane for the development of phenol sensors in potentiometry. Nata de coco membrane containing phenol is coated on the surface of the printed carbon electrode (screen-printed carbon electrode). The cross-sectional area of the carbon electrode coated with the membrane is 1.5 × 3 mm2, while the reference electrode is Ag/AgCl. The thickness of the electrode membrane affects the Nernstian factor. The optimum Nernstian factor is produced by 100 μm membrane thickness containing 117.5 μg of phenol. Measurement of phenol solution was carried out at pH 11, in the concentration range of 10−8 to 10−2 mol/L, resulting in a Nernstian factor of 41.8 ± 1.3 mV/decade. The Nernstian factor increased to 55.7 ± 0.4 mV/decade if the membrane of the electrode contained 0.1% Fe3O4 nanoparticles. This sensor has been applied in the real sample of river water, resulting in good accuracy and precision.
机译:Nata de coco是椰子水发酵后产生的细菌纤维素,是一种导电聚合物,电导率为553 S / cm,具有很高的机械稳定性。在这项研究中,nata de coco被用作支持膜,用于电位计中酚传感器的开发。在印刷碳电极(丝网印刷碳电极)的表面上涂布含有苯酚的Nata de coco膜。涂有碳膜的碳电极的截面积为1.5×3 mm 2 ,参比电极为Ag / AgCl。电极膜的厚度会影响能斯特系数。最佳的能斯特因数是由100μm的膜厚度(含117.5μg的苯酚)产生的。苯酚溶液的测量在pH 11下进行,浓度范围为10 -8 至10 -2 mol / L,得到的能斯登因子为41.8±1.3 mV /十年。如果电极膜含有0.1%的Fe3O4纳米粒子,则能斯登因子增加到55.7±0.4±mV /十倍。该传感器已应用于实际的河水样品中,具有良好的精度和精确度。

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