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An anthraquinone moiety/cysteamine functionalized-gold nanoparticle/chitosan based nanostructured composite for the electroanalytical detection of dissolved oxygen within aqueous media

机译:蒽醌部分/半胱胺官能化金纳米颗粒/壳聚糖基纳米结构复合材料,用于电分析检测水性介质中的溶解氧

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This work reports a nanostructured composite electrode comprising gold nanoparticles, anthraquinone derivatives and chitosan electrically wired via immobilisation upon a glassy carbon macroelectrode. The as-prepared nanostructured composite was morphologically characterised using transmission electron microscopy with surface characterization performed with atomic force microscopy while other physical characterization was undertaken by infra-red, UV-Vis, and energy dispersive X-ray spectroscopy. Electrochemical investigations and stability measurements of the composite electrode were performed by cyclic voltammetry. Electrocatalytic activity of the composite electrode was investigated for the oxygen reduction reaction in 0.1 M phosphate buffer solution of pH 6.5. Furthermore, the response characteristics show that this fabricated electrode has a shelf-life of between 3 and 4 months and has improved electrochemical and electrical properties and firm adhesion of the material with homogeneous dispersion at the electrode surface. The linear range and detection limit for the electrochemical detection of dissolved oxygen under the optimum conditions using the nanostructured composite was found to be over the accessible range of 0.2 to 5.8 mg La?’1 and 0.03 mg La?’1 respectively.
机译:这项工作报道了一种纳米结构的复合电极,该复合电极包括金纳米颗粒,蒽醌衍生物和壳聚糖,这些电极通过固定在玻璃碳大电极上而电连接。使用透射电子显微镜对制得的纳米结构复合材料进行形态学表征,用原子力显微镜进行表面表征,而其他物理表征则通过红外,UV-Vis和能量色散X射线光谱进行。复合电极的电化学研究和稳定性测量通过循环伏安法进行。研究了复合电极在pH 6.5的0.1 M磷酸盐缓冲溶液中的氧还原反应的电催化活性。此外,响应特性表明,这种制成的电极具有3至4个月的保质期,并具有改善的电化学和电学性能以及材料的牢固粘附力,并在电极表面均匀分散。发现在最佳条件下使用纳米结构复合材料进行电化学检测溶解氧的线性范围和检测极限分别在0.2至5.8 mg La?1和0.03 mg La?1的可及范围内。

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