首页> 外文期刊>Analytica chimica acta >Fabricating carbon-nanotubes-based porous foam for superoxide electrochemical sensing through one-step hydrothermal process induced by phytic acid
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Fabricating carbon-nanotubes-based porous foam for superoxide electrochemical sensing through one-step hydrothermal process induced by phytic acid

机译:通过植酸诱导的一步水热过程制造基于碳纳米管的多孔泡沫。通过植酸诱导的一步水热过程

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摘要

The detection of superoxide anions (O2??) is widely considered as a potential way for cancer diagnosis and the development of enzyme-mimic catalysts is the main challenge in the establishment of electrochemical sensors for O2??sensing in real samples. Here we present a novel enzyme- and metal-free electrochemical catalyst for superoxide (O2??) sensing based on the widely-used carbon nanotubes (CNT). Through a one-step hydrothermal process induced by phytic acid (PA), CNT-based porous foam (PACNTF) was successfully obtained. Characterizations demonstrated the enhanced defect and disorder degree of PACNTF after PA treatment, which leaded to the increased active sites of PACNTF for electron transfer and the adhesion of O2??during the electrochemical process. As a result, the PACNTF presented higher conductivity and larger current response toward O2??sensing when compared with CNT precursor and CNTF without PA treatment. The sensitivity of PACNTF/SPCE was calculated to be 1230?μA?cm-2?mM-1in the linear range of 0–193.6?μM?(R2?=?0.965) and 373?μA?cm-2?mM-1in the linear range of 193.6–1153.6?μM?(R2?=?0.995) with a limit of detection of 0.16?μM?(S/N?=?3). Further, the PACNTF/SPCE presented fast response toward cell-released O2??stimulated by Zymosan A. The above results indicated that the fabricated sensor holds potential usage in biological samples.
机译:超氧化物阴离子的检测被广泛认为是癌症诊断的潜在方法,并且酶模拟催化剂的发育是在真实样品中建立电化学传感器的主要挑战。在这里,我们在基于广泛使用的碳纳米管(CNT)的超氧化物(O2 o 2)感测到一种新的酶和无金属电化学催化剂。通过植酸(PA)诱导的一步水热过程,成功获得了CNT基多孔泡沫(PACNTF)。特征在PA治疗后表现出PACNTF的增强缺陷和紊乱程度,其在电化学过程中导致COPNTF的活性位点和O 2的粘附性。结果,与没有PA处理的CNT前体和CNTF相比,PACNTF呈现更高的导电性和更大的电流对O2感测的感测。 pacntf / spce的敏感性计算为1230?μa?cm-2?mm-1in0-193.6Ω·6Ω·μm≤(r2?= 0.965)和373?μa?cm-2?mm-1in线性范围为193.6-1153.6?μm?(r2?= 0.995),检测限为0.16≤μm?(s / n?= 3)。此外,PACNTF / SPCE呈现出对由唑烷A刺激的细胞释放的O 2α的快速响应。上述结果表明,制造的传感器在生物样品中保持潜在的使用。

著录项

  • 来源
    《Analytica chimica acta》 |2018年第2018期|共8页
  • 作者单位

    Shanghai Key Laboratory of Functional Materials Chemistry School of Chemistry and Molecular Engineering East China University of Science and Technology;

    Shanghai Key Laboratory of Functional Materials Chemistry School of Chemistry and Molecular Engineering East China University of Science and Technology;

    Shanghai Key Laboratory of Functional Materials Chemistry School of Chemistry and Molecular Engineering East China University of Science and Technology;

    Shanghai Key Laboratory of Functional Materials Chemistry School of Chemistry and Molecular Engineering East China University of Science and Technology;

    Shanghai Key Laboratory of Functional Materials Chemistry School of Chemistry and Molecular Engineering East China University of Science and Technology;

    Shanghai Key Laboratory of Functional Materials Chemistry School of Chemistry and Molecular Engineering East China University of Science and Technology;

    Shanghai Key Laboratory of Functional Materials Chemistry School of Chemistry and Molecular Engineering East China University of Science and Technology;

    Shanghai Key Laboratory of Functional Materials Chemistry School of Chemistry and Molecular Engineering East China University of Science and Technology;

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

    Carbon nanotubes; 3D porous foam; Cuperoxide anion; Living cells; Electrochemical sensor;

    机译:碳纳米管;3D多孔泡沫;伯氧化物阴离子;活细胞;电化学传感器;

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