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Functionalized nanoporous track-etched β-PVDF membrane electrodes for lead(II) determination by square wave anodic stripping voltammetry

机译:方波阳极溶出伏安法测定功能化纳米孔径刻蚀β-PVDF膜电极用于测定铅(II)

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摘要

Track-etched functionalized nanoporous β-PVDF membrane electrodes, or functionalized membrane electrodes (FMEs), are electrodes made from track-etched, poly(acrylic acid) (PAA) functionalized nanoporous β-poly(vinylidene fluoride) (β-PVDF) membranes with thin porous Au films sputtered on each side as electrodes. In order to form the β-PVDF nanoporous membranes, β-PVDF films are irradiated by swift heavy ions. After irradiation, radical tracks are left in the membranes. Etching removes some of the radical tracks revealing nanopores. The remaining radicals initiate radio grafting of PAA from the pore walls of the nanoporous β-PVDF. PAA is a cation exchange polymer that adsorbs metal ions, such as Pb~(2+), from aqueous solutions thus concentrating the ions into the membrane. After a calibrated time, the FME is transferred to an electrochemical cell for analysis. A negative potential is applied to the Au film of the FME for a set time to reduce the adsorbed ions onto the Au film working electrode. Square-wave anodic stripping voltammetry was performed on the FME to determine the Pb~(2+) ion concentration in the original solution based on calibration. The zero current intercept of the calibration for Pb~(2+) is 0.13 ppb (μg L~(-1)) and three times the sample blank deviation (3S/ N) is 0.050 ppb.
机译:径迹蚀刻的功能化纳米多孔β-PVDF膜电极或功能化膜电极(FME)是由径迹蚀刻的聚(丙烯酸)(PAA)官能化纳米多孔β-聚偏二氟乙烯(β-PVDF)膜制成的电极多孔的Au薄膜被溅射成两面作为电极。为了形成β-PVDF纳米多孔膜,用快速的重离子照射β-PVDF膜。辐照后,自由基轨迹留在膜中。蚀刻去除了一些揭示纳米孔的自由基轨迹。剩余的自由基从纳米多孔β-PVDF的孔壁引发PAA的放射性接枝。 PAA是一种阳离子交换聚合物,可从水溶液中吸附金属离子,例如Pb〜(2+),从而将离子浓缩到膜中。经过校准的时间后,将FME转移到电化学池中进行分析。在设定的时间内将负电势施加到FME的Au膜上,以减少吸附到Au膜工作电极上的离子。在FME上进行方波阳极溶出伏安法,基于校准确定原始溶液中的Pb〜(2+)离子浓度。 Pb〜(2+)校准的零电流截距为0.13 ppb(μgL〜(-1)),而样品空白偏差(3S / N)的三倍为0.050 ppb。

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