首页> 外文期刊>Electrochimica Acta >Direct electroiodimetric sensing of reducing biomolecule s using a modified multiwall carbon nanotube/ionic liquid paste electrode by tetra- n-octylammonium triiodide
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Direct electroiodimetric sensing of reducing biomolecule s using a modified multiwall carbon nanotube/ionic liquid paste electrode by tetra- n-octylammonium triiodide

机译:通过Tetra- N - 乙酰铵三碘化物,直接使用改性多壁碳纳米管/离子液膏电极的近极电解(Italic> S Italic>斜体>斜体> - 乙酰铵三碘化物

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摘要

An effective, sensitive and simple method as a direct electroiodimetric determination of reducing biological substances using a modified multiwall carbon nanotube/ionic liquid paste electrode has been introduced. Tetra-n-octylammonium triiodide (TOAI3) was used as a new modifier which was simply synthesized and characterized. By combining the advantages of both cyclic voltammetry and iodimetric technique, the problems associated with the classical iodimetry such as time consuming stages and indicator usage were removed. Three types of carbon paste electrodes (CPEs) with different structures were studied and their compositions were optimized. The appropriate one which was MWCNT/TOAI3/CILE (multiwall carbon nanotube/tetra-n-octylammonium triiodide/carbon ionic liquid electrode), displayed unique electrocatalytic behavior in acidic media and was validated for determination of ascorbic acid (AA), cysteine (Cys) and dopamine (DA) as typical reducing biomolecules in pharmaceutical and human blood serum samples. By applying cyclic voltammetry, the linear response ranges for the determination of AA, Cys and DA were recorded as 1.0–2500.0?μM, 1.0–1500.0?μM, and 0.8–800.0?μM, in order. The theoretical detection limits were found to be 1.0, 0.8, and 0.6?μM for the determination of AA, Cys, and DA, respectively. The effect of some coexisting biomolecules in determination of these analytes was investigated and glucose effectively interfered.
机译:引入了一种有效,敏感和简单的方法作为使用改性多壁碳纳米管/离子液浆电极还原生物物质的直接电镀的直接电碘。使用Tetra-N-辛酰基三碘化物(Toai3)用作简单合成和表征的新改性剂。通过组合循环伏安法和碘化技术的优点,去除与经典碘型和耗时阶段和指示器使用相关的问题。研究了具有不同结构的三种类型的碳浆料电极(CPE),并优化其组合物。适用于MWCNT / TOAI3 / CILE(多壁碳纳米管/四 - 辛铵三碘化碳/碳离子液体),在酸性培养基中显示出独特的电催化行为,并验证用于测定抗坏血酸(AA),半胱氨酸(CYS )和多巴胺(DA)作为药物和人血清样品中的典型还原生物分子。通过施加循环伏安法,用于测定AA,Cys和Da的线性响应范围被记录为1.0-2500.0≤μm,1.0-1500.0≤μm,0.8-800.0?μm。为了测定AA,Cys和DA,发现理论检测限为1.0,0.8和0.6Ωμm。研究了一些共存生物分子在测定这些分析物中的效果,并有效干扰了葡萄糖。

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