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Novel enzymatic glucose biosensor based on distributed electrodes covered with a solvothermal synthesized graphene material and platinum nanoparticles

机译:基于覆盖物合成石墨烯材料和铂纳米粒子的分布式电极的新型酶酶糖生物传感器

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摘要

The progress of nanotechnology has encouraged scientists to continuously pursue new electrode materials for forming improved electrochemical platforms for sensing. In this study, an environmentally friendly reducing agent and optimum time were utilized to synthesize solvothermal-assisted reduced graphene oxide (TRGO) that can be easily exfoliated in a coating solution and substituted on the microelectrode surface. Series connected distributed sensing electrodes were fabricated and patterned with TRGO decorated platinum nanoparticles (PtNPs), chitosan-enzyme composites, and Nafion, which were integrated onto the modified surface for effective glucose detection. The developed biosensor demonstrated good current response to glucose with a high sensitivity, short response time, and low detection limit of 41.18 mu A mM(-1) cm(-2), 5 s, and 0.0019 mM, respectively. The interference phenomena, reproducibility and the durability of the biosensor, were also examined. In addition, glucose levels in human urine were tested for a practical assessment of the proposed biosensor, and the results indicate that the sensor had superior urine glucose recognition. These results reveal that this noble nanostructured electrode with high surface area and electrocatalytic activity offers great promise for use in enzymatic biosensor applications.
机译:纳米技术的进展鼓励科学家持续追求新电极材料,用于形成改进的传感电化学平台。在该研究中,利用环境友好的还原剂和最佳时间来合成可以在涂布溶液中容易地剥离并在微电极表面取代的溶剂热辅助的石墨烯(TRGO)。用Trgo装饰铂纳米颗粒(PTNPS),壳聚糖酶复合材料和Nafion制造串联连接的分布式传感电极,并将其整合到改性表面上以进行有效葡萄糖检测。开发的生物传感器分别证明了对具有高灵敏度,短响应时间和41.18μmm(-1)cm(-2),5 s和0.0019mm的高灵敏度,短响应时间和低检测限的良好电流响应。还检查了生物传感器的干扰现象,再现性和耐久性。此外,测试了人类尿液中的葡萄糖水平,对所提出的生物传感器进行实际评估,结果表明传感器具有优异的尿葡萄糖识别。这些结果表明,具有高表面积和电催化活性的该贵纳米结构电极具有适用于酶发传感器应用的许多希望。

著录项

  • 来源
    《RSC Advances》 |2016年第78期|共9页
  • 作者

    Hossain M. F.; Park J. Y.;

  • 作者单位

    Kwangwoon Univ Dept Elect Engn Micro Nano Devices &

    Packaging Lab Seoul South Korea;

    Kwangwoon Univ Dept Elect Engn Micro Nano Devices &

    Packaging Lab Seoul South Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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