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Electrochemical Sensing of Bisphenol A on Facet-Tailored TiO2 Single Crystals Engineered by Inorganic-Framework Molecular Imprinting Sites

机译:双酚A在面部剪裁TiO 2 单晶体中的电化学传感,由无机框架分子印迹位点设计

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摘要

Noble metals, nanostructured carbon, and their hybrids are widely used for electrochemical detection of persistent organic pollutants. However, despite of the rapid detection process and high accuracy, these materials generally suffer from high costs, metallic impurity, heterogeneity, irreversible adsorption and poor sensitivity. Herein, the high-energy {001}-exposed TiO_(2) single crystals with specific inorganic-framework molecular recognition ability was prepared as the electrode material to detect bisphenol A (BPA), a typical and widely present organic pollutant in the environment. The oxidation peak current was linearly correlated to the BPA concentration from 10.0 nM to 20.0 μM ( R ~(2) = 0.9987), with a low detection limit of 3.0 nM (S/N = 3). Furthermore, it exhibited excellent discriminating ability, high anti-interference capacity, and good long-term stability. Its good performance for BPA detection in real environmental samples, including tap water, lake and river waters, domestic wastewater, and municipal sludge, was also demonstrated. This work extends the applications of TiO_(2) semiconductor and suggests that this material could be used as a highly active, stable, low-cost, and environmentally benign electrode material for electrochemical sensing.
机译:贵金属,纳米结构碳和它们的杂种广泛用于持久性有机污染物的电化学检测。然而,尽管检测过程快速和高精度,但这些材料通常遭受高成本,金属杂质,异质性,不可逆吸附和敏感性差。这里,制备具有特异性无机框架分子识别能力的高能量{001} - 散合TiO_(2)单晶作为用于检测双酚A(BPA)的电极材料,典型和广泛存在环境中的有机污染物。氧化峰电流与来自10.0nm至20.0μm(R〜(2)= 0.9987)的BPA浓度线性相关,检测限为3.0nm(s / n = 3)。此外,它表现出卓越的辨别能力,高抗干扰能力和良好的长期稳定性。还证明了其实际环境样本中BPA检测的良好表现,包括自来水,湖泊和河流,国内废水和市政污泥。这项工作扩展了TiO_(2)半导体的应用,并表明该材料可用作电化学传感的高活性,稳定,低成本和环境良性的电极材料。

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  • 来源
    《Analytical chemistry》 |2018年第5期|共9页
  • 作者单位

    CAS Key Laboratory of Urban Pollutant Conversion Department of Chemistry University of Science &

    Technology of China Hefei 230026 China;

    CAS Key Laboratory of Urban Pollutant Conversion Department of Chemistry University of Science &

    Technology of China Hefei 230026 China;

    CAS Key Laboratory of Urban Pollutant Conversion Department of Chemistry University of Science &

    Technology of China Hefei 230026 China;

    CAS Key Laboratory of Urban Pollutant Conversion Department of Chemistry University of Science &

    Technology of China Hefei 230026 China;

    CAS Key Laboratory of Urban Pollutant Conversion Department of Chemistry University of Science &

    Technology of China Hefei 230026 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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