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首页> 外文期刊>Electrochimica Acta >Synthesis, characterization and application of novel lead imprinted polymer nanoparticles as a high selective electrochemical sensor for ultra-trace determination of lead ions in complex matrixes
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Synthesis, characterization and application of novel lead imprinted polymer nanoparticles as a high selective electrochemical sensor for ultra-trace determination of lead ions in complex matrixes

机译:新型铅印迹聚合物纳米粒子的合成,表征和应用,可作为超选择性测定复杂基质中铅离子的高选择性电化学传感器

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摘要

We report on the design of a lead(II)-selective electrode based on the use of lead(II) imprinted polymer nanoparticles (IP-NPs), and its application for the differential pulse voltammetry determination of lead ions, The IP-NPs were obtained by precipitation polymerization of 4-vinylpyridine (the functional monomer), ethylene glycol dimethacrylate (the cross-linker), 2,2'-azobisisobutyronitrile (the initiator), 4-(2-pyridylazo)resorcinol (the lead-binding ligand), and lead ions (the template ion) in acetonitrile solution. After polymerization, the Pb(II) in the polymer nanoparticles were leached out with dilute hydrochloric acid to create cavities for hosting Pb(II). The new sensor showed high selectivity for lead ions in the presence of common potential interferences according to the specific recognition nature of the synthesized material. A carbon paste electrode was modified with the IP-NPs, and differential pulse stripping voltammetry was applied as the detection technique after open-circuit sorption of Pb(II) ions and its reduction to the metallic form. An explicit difference in the response was observed between the electrodes modified with IP-NPs and electrodes modified with non-IP-NPs. The modified electrode responds to Pb(II) was linear in the 0.1 nM to 10 nM (with sensitivity of 49.179 nAM) and in the 10 nM to 10 μM (with sensitivity of 30.305 μA/μM) concentration range. The limit of detection (LOD) of the sensor was 30 pM (at S/N =3). The sensor was successfully applied to the trace determination of Pb(II) in spiked environmental water samples.
机译:我们报告了基于铅(II)印迹聚合物纳米粒子(IP-NPs)的铅(II)选择电极的设计及其在微分脉冲伏安法测定铅离子中的应用,IP-NPs为通过4-乙烯基吡啶(功能单体),乙二醇二甲基丙烯酸酯(交联剂),2,2'-偶氮二异丁腈(引发剂),4-(2-吡啶基偶氮)间苯二酚(铅结合配体)的沉淀聚合制得,以及乙腈溶液中的铅离子(模板离子)。聚合后,将聚合物纳米颗粒中的Pb(II)用稀盐酸浸出,以形成用于容纳Pb(II)的空腔。根据合成材料的特定识别特性,在存在常见潜在干扰的情况下,新传感器对铅离子具有很高的选择性。用IP-NP修饰碳糊电极,并在开路吸附Pb(II)离子并将其还原为金属形式后,采用差分脉冲溶出伏安法作为检测技术。在用IP-NPs修饰的电极和用非IP-NPs修饰的电极之间,观察到了明显的响应差异。修饰电极对Pb(II)的响应在0.1 nM至10 nM(灵敏度为49.179 nA / nM)和10 nM至10μM(灵敏度为30.305μA/μM)浓度范围内呈线性。传感器的检测极限(LOD)为30 pM(在S / N = 3时)。该传感器成功应用于痕量环境水样品中痕量铅的测定。

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