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A chemically modified laser-induced porous graphene based flexible and ultrasensitive electrochemical biosensor for sweat glucose detection

机译:基于化学改性的激光诱导的基于多孔石墨烯的柔性和超声电化学电化学生物传感器,用于汗血葡萄糖检测

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摘要

Porous laser-induced graphene (LIG) is an attractive and promising carbon material for electrochemical applications because it can immobilize various proteins, such as enzymes, antibodies, and receptors. However, poor inherent electrical properties caused by low surface conductivity is still a critical drawback for various applications. Here, we have proposed a surface modification method for the LIG electrode using acetic acid treatment via facile and practicable dipping technique. This simple acetic acid treatment dramatically increased the ratio of carbon-carbon bonds which effectively increased conductivity and decreased sheet resistance. In other words, acetic acid additionally reduced carbohydrate functional groups. Importantly, these unique properties also facilitated the stable and uniform dispersion of highly catalytic Pt nanoparticles (PtNPs) on LIG by avoiding the concentration of electric field on nanoparticles that can cause aggregation during electrodeposition. Finally, chitosan-glucose oxidase (GOx) composite was successfully immobilized onto the LIG/PtNPs electrode to fabricate a sweat glucose biosensor. The as-prepared LIG/PtNPs electrode exhibited a high sensitivity of 4.622 uA/ mM as well as an ultra-low limit of detection (signal to noise ratio is 3) which was less than 300 nM and dynamic linear range up to 2.1 mM. Furthermore, we tested the variation of blood glucose level before and after meal using the amperometric response of the sensor which demonstrates the commercial potential of this unique sweat glucose biosensor.
机译:多孔激光诱导的石墨烯(LIG)是一种用于电化学应用的有吸引力和有前途的碳材料,因为它可以固定各种蛋白质,例如酶,抗体和受体。然而,由低表面电导率引起的差的固有电特性仍然是各种应用的关键缺点。在这里,我们已经提出了一种使用乙酸处理的Lig电极的表面改性方法,通过容易和切实可行的浸渍技术。这种简单的乙酸处理显着增加了有效增加了导电性和薄层电阻下降的碳 - 碳键的比例。换句话说,乙酸另外还原碳水化合物官能团。重要的是,这些独特的性质还促进了通过避免在电沉积期间引起聚集的纳米颗粒上的电场的浓度来促进高催化Pt纳米颗粒(PTNP)对Lig的稳定和均匀分散。最后,将壳聚糖葡萄糖氧化酶(GOX)复合物成功地固定在LIG / PTNPS电极上以制造汗液葡萄糖生物传感器。所制备的LIG / PTNPS电极为4.622 UA / mm的高灵敏度,以及超低的检测限(信噪比为3),其小于300nm,动态线性范围高达2.1mm。此外,我们使用传感器的电流响应来测试膳食前后血糖水平的变异,该传感器响应显示出这种独特的汗液葡萄糖生物传感器的商业潜力。

著录项

  • 来源
    《Sensors and Actuators》 |2020年第5期|127866.1-127866.10|共10页
  • 作者单位

    Micro/Nano Devices and Packaging Lab. Department of Electronic Engineering Kwangwoon University 447-1 Wolgye-dong Nowon-gu Seoul 01897 Repvblic of Korea;

    Micro/Nano Devices and Packaging Lab. Department of Electronic Engineering Kwangwoon University 447-1 Wolgye-dong Nowon-gu Seoul 01897 Repvblic of Korea;

    Micro/Nano Devices and Packaging Lab. Department of Electronic Engineering Kwangwoon University 447-1 Wolgye-dong Nowon-gu Seoul 01897 Repvblic of Korea;

    Micro/Nano Devices and Packaging Lab. Department of Electronic Engineering Kwangwoon University 447-1 Wolgye-dong Nowon-gu Seoul 01897 Repvblic of Korea;

    Micro/Nano Devices and Packaging Lab. Department of Electronic Engineering Kwangwoon University 447-1 Wolgye-dong Nowon-gu Seoul 01897 Repvblic of Korea;

    Micro/Nano Devices and Packaging Lab. Department of Electronic Engineering Kwangwoon University 447-1 Wolgye-dong Nowon-gu Seoul 01897 Repvblic of Korea;

    Micro/Nano Devices and Packaging Lab. Department of Electronic Engineering Kwangwoon University 447-1 Wolgye-dong Nowon-gu Seoul 01897 Repvblic of Korea;

    Micro/Nano Devices and Packaging Lab. Department of Electronic Engineering Kwangwoon University 447-1 Wolgye-dong Nowon-gu Seoul 01897 Repvblic of Korea;

    Micro/Nano Devices and Packaging Lab. Department of Electronic Engineering Kwangwoon University 447-1 Wolgye-dong Nowon-gu Seoul 01897 Repvblic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Acetic acid treatment; Laser-induced graphene (LIG); Electrochemical biosensor; Ultra-sensitive and -low detection limit; Sweat glucose detection;

    机译:乙酸处理;激光诱导的石墨烯(LIG);电化学生物传感器;超敏感和流动的检测限;汗葡萄糖检测;
  • 入库时间 2022-08-18 22:27:52

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