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首页> 外文期刊>Analytica chimica acta >Investigation of the electrochemical and electrocatalytic behavior of positively charged gold nanoparticle and l-cysteine film on an Au electrode
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Investigation of the electrochemical and electrocatalytic behavior of positively charged gold nanoparticle and l-cysteine film on an Au electrode

机译:金电极上带正电的金纳米粒子和l-半胱氨酸膜的电化学和电催化行为研究

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摘要

Positively charged gold nanoparticle (positively charged nano-Au), which was prepared, characterized by ξ-potential and transmission electron microscopy (TEM) was used in combination with l-cysteine to fabricate a modified electrode for electrocatalytic reaction of biomolecules. Compared with electrodes modified by negatively charged gold nanoparticle/l-cysteine, or l-cysteine alone, the electrode modified by the positively charged gold nanoparticle/l-cysteine exhibited excellent electrochemical behavior toward the oxidation of biomolecules such as ascorbic acid, dopamine and hydrogen peroxide. Moreover, the proposed mechanism for electrocatalytic response of positively charged gold nanoparticle was discussed. The immunosensor showed a specific to ascorbic acid in the range 5.1 × 10~(-7)–6.7 × 10~(-4) M and a low detection limit of 1.5 × 10~(-7) M. The experimental results demonstrate that positively charged gold nanoparticle have more efficient electrocatalytic reaction than negatively charged gold nanoparticle, which opens up new approach for fabricating sensor.
机译:制备的带正电的金纳米粒子(带正电的纳米金),以ξ电位为特征,通过透射电子显微镜(TEM)与l-半胱氨酸结合使用,制成修饰电极,用于生物分子的电催化反应。与带负电的金纳米粒子/ l-半胱氨酸或单独的l-半胱氨酸修饰的电极相比,经带正电的金纳米粒子/ l-半胱氨酸修饰的电极对生物分子(如抗坏血酸,多巴胺和氢)的氧化表现出优异的电化学行为。过氧化物。此外,讨论了所提出的带正电的金纳米粒子电催化反应的机理。免疫传感器显示抗坏血酸的特异性范围为5.1×10〜(-7)–6.7×10〜(-4)M,检测限低至1.5×10〜(-7)M。实验结果表明:带正电的金纳米粒子比带负电的金纳米粒子具有更有效的电催化反应,为传感器的制备开辟了新途径。

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