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Bismuth/hydroxyapatite-modified carbon screen-printed electrode for heavy-metal ion detection in aqueous media

机译:铋/羟基磷灰石修饰的碳丝网印刷电极,用于水性介质中的重金属离子检测

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Square-wave voltammetric stripping analysis is attractive for environmental monitoring and trace metal ion determination. The sensitivity is a result of analytes preconcentration steps on the electrode and advanced measurement procedures, where metal analytes are stripped away from the electrode at appropriate potential scan. Screen-printed electrode (SPE) has great advantages for in situ assays of heavy metal ions. Modification of SPE with bismuth (Bi) film improves the amalgamation of metal ions and the addition of hydroxyapatite (HA) increases the ion sorption, and enhances the current response due to the large porous structure and surface active sites for the metal ion binding. The ionization of the functional groups on the electrode surface upon contact with the aqueous system further assists the cation binding. The analytical performance of Bi and HA-modified SPE for simultaneous detection of Cd(II) and Pb(II) ions by square wave anodic stripping voltammetry (SWASV) was evaluated. Under the optimized electrochemical working conditions, calibration graph is linear for 240 s deposition time, in 0.1 M acetate buffer at pH 7.6 with the detection limit of 16.8 ppb for Pb(II). Two peaks corresponding to Cd(II) at -0.8 V and Pb(II) at -0.6 V can be discerned suggesting that Bi-HA modification had increased the current responses.
机译:方波伏安溶出分析对环境监测和痕量金属离子测定具有吸引力。灵敏度是电极上分析物预浓缩步骤和高级测量程序的结果,在适当的电势扫描下,金属分析物会从电极上剥离掉。丝网印刷电极(SPE)在重金属离子的原位分析中具有很大的优势。用铋(Bi)膜改性SPE可以改善金属离子的汞齐化,并且添加羟基磷灰石(HA)可以增加离子吸附,并由于具有大的多孔结构和金属离子结合的表面活性位而增强了电流响应。与水系统接触后,电极表面上官能团的电离进一步有助于阳离子结合。评价了Bi和HA修饰的SPE通过方波阳极溶出伏安法(SWASV)同时检测Cd(II)和Pb(II)离子的分析性能。在优化的电化学工作条件下,在0.1 M的pH 7.6乙酸盐缓冲液中,Pb(II)的检出限为16.8 ppb,校准曲线在240 s沉积时间内是线性的。可以识别出两个峰,分别对应于-0.8 V处的Cd(II)和-0.6 V处的Pb(II),这表明Bi-HA修饰增加了电流响应。

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