首页> 外文期刊>Sensors and Actuators >Carbon felt-based bioelectrocatalytic flow-through detectors: Highly sensitive amperometric determination of H_2O_2 based on a direct electrochemistry of covalently modified horseradish peroxidase using cyanuric chloride as a linking agent
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Carbon felt-based bioelectrocatalytic flow-through detectors: Highly sensitive amperometric determination of H_2O_2 based on a direct electrochemistry of covalently modified horseradish peroxidase using cyanuric chloride as a linking agent

机译:基于碳毡的生物电催化流通量检测器:基于氰尿酰氯作为连接剂的共价修饰的辣根过氧化物酶的直接电化学,对H_2O_2的高灵敏度安培测定

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摘要

Horseradish peroxidase (HRP) was chemically modified using cyanuric chloride (CC) as a linking agent onto a carbon felt (CF), which is a microelectrode ensemble of micro carbon fiber (>7 u.m, diameter) with a random three-dimensional structure. The resulting HRP-modified CF (HRP-ccCF) exhibited well-defined redox waves based on the HRP heme Fe~Ⅲ/Fe~Ⅱ redox couple at -0.23 V vs. Ag/AgCl (at pH 7.0), while the HRP-adsorbed CF (HRP-CF) showed no apparent redox couple in the same potential range, indicating that the chemical modification of HRP via CC facilitated the direct electron transfer (DET) between HRP and CF. The apparent heterogeneous electron transfer rate constant k, was estimated to be 35 s~'. Cyclic voltammetry and electrochemical impedance spectroscopy revealed that the interfacial properties (i.e., structure, morphology of enzyme-layer) of covalently modified HRP (HRP-ccCF) and physically adsorbed HRP (HRP-CF) are different, resulting in the difference in the electron transfer properties. The HRP-ccCF was successfully used as a working electrode unit in bioelectrocatalytic flow-through detector for highly sensitive amperometric determination of H_2O_2. Under the optimized conditions (i.e., applied potential, OV vs. Ag/AgCl; carrier flow rate, 3.25 ml/min; and carrier pH 7.0), the cathodic peak current of H2O2 linearly increased up to 3 u-M (sensitivity, 1.94 μA/μM; the detection limit,0.08 μM [S/N - 3]) with sample through-put of ca. 90 samples/h.
机译:辣根过氧化物酶(HRP)使用氰尿酰氯(CC)作为连接剂化学修饰到碳毡(CF)上,该碳毡是具有无规三维结构的微碳纤维(直径大于7μm)的微电极组件。基于HRP血红素Fe〜Ⅲ/ Fe〜Ⅱ氧化还原对在-0.23 V vs.Ag/AgCl(在pH 7.0时)下,所得的HRP改性CF(HRP-ccCF)表现出清晰的氧化还原波。吸附的CF(HRP-CF)在相同的电位范围内未显示明显的氧化还原对,表明通过CC对HRP进行化学修饰有助于HRP与CF之间的直接电子转移(DET)。表观的异质电子传输速率常数k估计为35 s'。循环伏安法和电化学阻抗谱表明,共价修饰的HRP(HRP-ccCF)和物理吸附的HRP(HRP-CF)的界面性质(即酶层的结构,形态)不同,导致电子差异转移特性。 HRP-ccCF已成功用作生物电催化流通检测器中的工作电极单元,用于高灵敏度安培测定H_2O_2。在最佳条件下(即施加电势,OV对Ag / AgCl;载流子流速为3.25 ml / min;载流子pH值为7.0),H2O2的阴极峰值电流线性增加至3 uM(灵敏度,1.94μA/ μM;检测限为0.08μM[S / N-3]),样品通量约为90个样本/小时。

著录项

  • 来源
    《Sensors and Actuators》 |2011年第2期|p.722-729|共8页
  • 作者

    Yue Wang; Yasushi Hasebe;

  • 作者单位

    Department of Materials and Science. Graduate School of Engineering. Saitama Institute of Technology, 1690 Fusaiji, Okabe. Saitama 369-0293. Japan , School of Chemical Engineering, University of Science and Technology Liaoning 185 Qianshan Road, Hi-tech zone, Anshan, Liaoning 114501, PR China;

    Department of Materials and Science. Graduate School of Engineering. Saitama Institute of Technology, 1690 Fusaiji, Okabe. Saitama 369-0293. Japan , Department of Life Science and Green Chemistry, Faculty of Engineering, Saitama Institute ofTechnology. 1690 Fusaiji, Fukaya, Saitama 369-0293, Japan;

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

    carbon felt; bioelectrocatalytic flow-through detector; horseradish peroxidase; direct electron transfer; cyanuric chloride;

    机译:碳毡;生物电催化流通检测器;辣根过氧化物酶;直接电子传递;氰尿酰氯;

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