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Graphite electrodes coated with poly(dimethyldiallylammonium)chloride network films cross-linked by gamma-irradiation

机译:涂有通过γ射线交联的聚二甲基二烯丙基氯化铵网络薄膜的石墨电极

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Properties of graphite electrodes coated with poly(dimethyldiallylammonium) chloride (PDMDPAAC) are described. Gamma-irradiation was used to immobilize the polymer on the graphite surface by cross-linking the water-soluble polymer into an insoluble network. Immobilization of the network is aided by the high porosity of the graphite electrodes. Potassium ferricyanide was used as a model analyte to demonstrate electrochemical properties of the polymer modified electrode. Cyclic voltammograms of Fe(CN)(6)(3-) at the PDMDAAC modified electrodes exhibit partitioning of the analyte into the polymer film. Chronocoulometry was used to determine the quantities of Fe(CN)(6)(3-) trapped in the polymer network. The results of ion-exchange reactions of Fe(CN)(6)(3-) with the PDMDAAC film were used to determine distribution coefficients (K-d) between the polymer film and the bulk solution of the analyte. K-d is 4000 for 0.01 mM Fe(CN)(6)(3-) in 0.2 M KCl. Analytical calibration plots of cyclic voltammetric peak currents for Fe(CN)(6)(3-) at gamma-irradiated PDMDAAC/graphite electrodes were linear from 0.01 mM to 0.4 mM. Substantial enhancement of current signal was observed at the PDMDAAC modified graphite vs. bare electrodes. Variation in radiation dosage from 0.48 to 5.5 Mrad does not change the cross-link density of PDMDAAC on the graphite surface as evidenced by almost identical cyclic voltammograms of Fe(CN)(6)(3-) at electrodes exposed to dosages over this range. [References: 31]
机译:描述了涂覆有聚二甲基二烯丙基氯化铵(PDMDPAAC)的石墨电极的性能。通过将水溶性聚合物交联成不溶性网络,使用伽马射线辐照将聚合物固定在石墨表面上。石墨电极的高孔隙率有助于网络的固定。铁氰化钾用作模型分析物,以证明聚合物修饰电极的电化学性能。 Fe(CN)(6)(3-)在PDMDAAC修饰电极上的循环伏安图显示了分析物在聚合物膜中的分配。计时容量法用于确定聚合物网络中捕获的Fe(CN)(6)(3-)的量。 Fe(CN)(6)(3-)与PDMDAAC膜的离子交换反应结果用于确定聚合物膜与被分析物本体溶液之间的分布系数(K-d)。在0.2 M KCl中,0.01 mM Fe(CN)(6)(3-)的K-d为4000。 Fe(CN)(6)(3-)在伽马射线辐照的PDMDAAC /石墨电极上的循环伏安峰值电流的分析标定图在0.01 mM至0.4 mM之间呈线性关系。在PDMDAAC改性的石墨与裸电极之间观察到电流信号的显着增强。辐射剂量从0.48到5.5 Mrad的变化不会改变PDMDAAC在石墨表面上的交联密度,这是由暴露于该范围剂量下的电极上的Fe(CN)(6)(3-)几乎相同的循环伏安图所证明的。 。 [参考:31]

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