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Sensing System Integrating Lanthanum Hydroxide Nanowires with Copper(II)Ion for Uracil and its Application

机译:氢氧化镧纳米线与铜(II)离子集成的尿嘧啶传感系统及其应用

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摘要

A sensing system for uracil was constituted by using lanthanum hydroxide nanowires(LNW)as a modifier to obtain LNW modified carbon paste electrode(LNW/CPE)and by introducing copper(II)ion into supporting electrolyte to transform electroinactive uracil to electroactive uracil-Cu(II)complex.The voltammetric behaviors of uracil in the presence of Cu(II)ion at LNW/CPE were investigated.A reduction peak of the uracil-Cu(II)complex at -0.18 V was the two-electron reduction of Cu(II)ion in the uracil-Cu(II)complex;while a new oxidation peak at 0.22 V was the one-electron oxidation of the uracil-Cu(I)complex.Additionally,the voltammetric responses of all the complexes at LNW/CPE were more sensitive than that at carbon and multiwall carbon nanotube paste electrodes,which resulted from both the large surface effect of LNW and the chemical coordination of uracil with La(IH)ion in LNW.With the sensitive oxidation peak of the uracil-Cu(I)complex at LNW/CPE,a linear range of 4.0 x 10~(-9)-3.0 x 10~(-8)mol/l for uracil was obtained along with a detection limit of 2.0 x 10-10 mol/l.The proposed system was evaluated by the determination of uracil derivatives,anticancer drug 5-flurouracil,in pharmaceutical preparations.
机译:以氢氧化镧纳米线(LNW)为改性剂,得到LNW改性碳糊电极(LNW / CPE),将铜(II)离子引入支持电解质中,将电惰性尿嘧啶转化为电活性尿嘧啶-Cu,构成尿嘧啶传感系统。研究了LNW / CPE上存在Cu(II)离子时尿嘧啶的伏安行为.-0.18 V时尿嘧啶-Cu(II)络合物的还原峰是Cu的两电子还原尿嘧啶-铜(II)络合物中的(II)离子;而在0.22 V处有一个新的氧化峰是尿嘧啶-铜(I)络合物的单电子氧化。此外,所有络合物在LNW / CPE比碳纳米管和多壁碳纳米管糊状电极更敏感,这是由于LNW的表面效应大,以及LNW中尿嘧啶与La(IH)离子的化学配位所致。 (I)LNW / CPE的复合物,线性范围为4.0 x 10〜(-9)-3.0 x 10〜(得到的尿嘧啶含量为-8)mol / l,检出限为2.0 x 10-10 mol / l。通过测定药物制剂中的尿嘧啶衍生物,抗癌药物5-氟尿嘧啶来评价所提议的系统。

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