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All-Solid-State Sodium-Selective Electrode with a Solid Contact of Chitosan/Prussian Blue Nanocomposite

机译:具有壳聚糖/普鲁士蓝纳米复合材料固相接触的全固态钠选择电极

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摘要

Conventional ion-selective electrodes with a liquid junction have the disadvantage of potential drift. All-solid-state ion-selective electrodes with solid contact in between the metal electrode and the ion-selective membrane offer high capacitance or conductance to enhance potential stability. Solution-casted chitosan/Prussian blue nanocomposite (ChPBN) was employed as the solid contact layer for an all-solid-state sodium ion-selective electrode in a potentiometric sodium ion sensor. Morphological and chemical analyses confirmed that the ChPBN is a macroporous network of chitosan that contains abundant Prussian blue nanoparticles. Situated between a screen-printed carbon electrode and a sodium-ionophore-filled polyvinylchloride ion-selective membrane, the ChPBN layer exhibited high redox capacitance and fast charge transfer capability, which significantly enhanced the performance of the sodium ion-selective electrode. A good Nernstian response with a slope of 52.4 mV/decade in the linear range from 10−4–1 M of NaCl was observed. The stability of the electrical potential of the new solid contact was tested by chronopotentiometry, and the capacitance of the electrode was 154 ± 4 µF. The response stability in terms of potential drift was excellent (1.3 µV/h) for 20 h of continuous measurement. The ChPBN proved to be an efficient solid contact to enhance the potential stability of the all-solid-state ion-selective electrode.
机译:具有液体结的常规离子选择电极具有电位漂移的缺点。在金属电极和离子选择膜之间具有固体接触的全固态离子选择电极可提供高电容或电导率,从而增强电位稳定性。溶液浇铸的壳聚糖/普鲁士蓝纳米复合材料(ChPBN)被用作电位钠离子传感器中全固态钠离子选择电极的固体接触层。形态和化学分析证实,ChPBN是壳聚糖的大孔网络,其中包含丰富的普鲁士蓝纳米颗粒。 ChPBN层位于丝网印刷的碳电极和钠离子填充的聚氯乙烯离子选择膜之间,具有高氧化还原电容和快速的电荷转移能力,从而显着提高了钠离子选择电极的性能。在10 −4 –1 M NaCl的线性范围内,观察到良好的Nernstian响应,斜率为52.4 mV /十倍。通过计时电位法测试了新的固体触点的电位稳定性,电极的电容为154±4 µF。连续测量20小时,响应漂移的稳定性极佳(1.3 µV / h)。 ChPBN被证明是有效的固态接触,可以增强全固态离子选择电极的电位稳定性。

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