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首页> 外文期刊>Journal of Hazardous Materials >Biosensor based on polyaniline-polyacrylonitrile-graphene hybrid assemblies for the determination of phenolic compounds in water samples
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Biosensor based on polyaniline-polyacrylonitrile-graphene hybrid assemblies for the determination of phenolic compounds in water samples

机译:基于聚苯胺-聚丙烯腈-石墨烯混合组件的生物传感器测定水样中的酚类化合物

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摘要

Phenolic compounds are major environmental pollutants due to their toxic and hazardous nature on human health. A fast, sensitive and stable sensor for determination of phenolic compounds in the environmental water remains challenging. Herein, a biosensor platform with stable response current was fabricated by entrapment of polyphenol oxidase (PPO) into hybrid assemblies of the conducting polyaniline (PAni)-porous polyacrylonitrile (Pan)-nanostructured graphene (GRA) and phase inversion process. The porous structure of Pan provided a favorable microenvironment for easily binding to PAni and GRA to obtain hybrid assemblies for effective immobilization of enzyme and increased synergistic effect. The morphologies and the electrochemical behaviors of the as-prepared biosensor were investigated using scanning electron microscopy (SEM), electrochemical impedance spectroscopy (EIS) and cyclic voltammetry (CV), respectively. The proposed biosensor showed excellent sensitivity (6.46 mu A mu M-1 cm(-2)) and fast response time ((similar to)5 s) with low detection limit (2.65x10(-7) M) under the optimal pH value and applied potential. The biosensor was highly selective towards p-cresol that almost no signal was detected from common interferents. The biosensor was used for determination of phenolic compounds in water samples with satisfactory results compared with that of UPLC, demonstrating its great potential as a biosensor for the rapid determination of phenolic pollutants.
机译:酚类化合物是主要的环境污染物,因为它们对人体健康具有毒性和危害性。快速,灵敏和稳定的传感器来测定环境水中的酚类化合物仍然具有挑战性。本文中,通过将多酚氧化酶(PPO)截留到导电聚苯胺(PAni)-多孔聚丙烯腈(Pan)-纳米结构化石墨烯(GRA)的混合组件中并进行相转化过程,制造了具有稳定响应电流的生物传感器平台。潘的多孔结构提供了有利的微环境,使其易于与PAni和GRA结合,从而获得了可有效固定酶并增强协同效应的杂化组合。分别使用扫描电子显微镜(SEM),电化学阻抗谱(EIS)和循环伏安法(CV)研究了所制备生物传感器的形貌和电化学行为。所提出的生物传感器在最佳pH值下显示出极好的灵敏度(6.46μAμM-1cm(-2))和快速的响应时间((类似于)5 s)和低检测限(2.65x10(-7)M)和应用潜力。该生物传感器对对甲酚的选择性很高,几乎没有检测到来自普通干扰物的信号。与UPLC相比,该生物传感器用于测定水样中的酚类化合物,具有令人满意的结果,证明了其作为快速测定酚类污染物的生物传感器的巨大潜力。

著录项

  • 来源
    《Journal of Hazardous Materials》 |2019年第15期|120714.1-120714.7|共7页
  • 作者单位

    Zhejiang Univ Inst Marine Chem & Environm Ocean Coll Zhoushan 316021 Peoples R China;

    Zhejiang Univ Inst Marine Chem & Environm Ocean Coll Zhoushan 316021 Peoples R China|Minist Nat Resources Key Lab Marine Ecosyst & Biogeochem Inst Oceanog 2 Hangzhou 310012 Zhejiang Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Polyaniline; Nanocomposite; Polyphenol oxidase; Biosensor; Sensitivity;

    机译:聚苯胺纳米复合材料多酚氧化酶;生物传感器灵敏度;

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