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首页> 外文期刊>Sensors and Actuators >Fabrication of a novel gold nanospheres/activated carbon nanocomposite for enhanced electrocatalytic activity toward the detection of toxic hydrazine in various water samples
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Fabrication of a novel gold nanospheres/activated carbon nanocomposite for enhanced electrocatalytic activity toward the detection of toxic hydrazine in various water samples

机译:新型金纳米球/活性炭纳米复合材料的制备,用于增强对各种水样中有毒肼的检测的电催化活性

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摘要

We report the preparation of a novel nanocomposite viz. gold nanoparticles (Au) decorated activated carbon (AC) modified glassy carbon electrode by a simple electrochemical approach to trace level detection of hydrazine. The morphology and chemical composition of the resultant AC/Au nanocomposite were characterized by field emission scanning electron microscopy (FESEM), X-ray photoelectron spectroscopy (XPS), and energy dispersive X-ray spectroscopic (EDX) method. The amounts of carbon, hydrogen, nitrogen and oxygen functional groups with highly porous nature of the AC may greatly inhibit the Au nanospheres on carbon surface. The electro-oxidation of hydrazine has been assessed by cyclic voltammetry, linear sweep voltammetry and amperometry method. Notably, the AC/Au nanocomposite modified GCE exhibits with a sharp peak at a very lower oxidation potential (0.13 V) with 3-fold current than the AC/GCE and Au/GCE. We obtained two linear ranges by using amperometric sensor (ⅰ) 0.44-208 μM with the sensitivity of 4.936 μA μM~(-1) cm~(-2) and (ⅱ) 5-390 nM with the sensitivity of 15.18 nA μM~(-1) cm~(-2). Remarkably, we achieved a very lower detection limit of 6.3 nM for the detection of hydrazine. The results reveal that AC/Au nanocomposite could be employed for the detection of hydrazine with simplicity, low cost, repeatability and stability. In addition, the proposed method was applied to determine the hydrazine in various water samples with acceptable results.
机译:我们报告了新型纳米复合材料的制备。金纳米粒子(Au)修饰的活性炭(AC)修饰的玻碳电极,采用简单的电化学方法检测痕量肼。通过场发射扫描电子显微镜(FESEM),X射线光电子能谱(XPS)和能量色散X射线能谱(EDX)方法表征了所得AC / Au纳米复合材料的形态和化学组成。具有高度多孔性的AC的碳,氢,氮和氧官能团的量可以极大地抑制碳表面上的Au纳米球。肼的电氧化已通过循环伏安法,线性扫描伏安法和安培法进行了评估。值得注意的是,AC / Au纳米复合材料修饰的GCE在比AC / GCE和Au / GCE低三倍的电流下,在非常低的氧化电位(0.13 V)处显示出一个尖峰。我们使用安培传感器(ⅰ)0.44-208μM(灵敏度为4.936μAμM〜(-1)cm〜(-2)和(ⅱ)5-390 nM(灵敏度为15.18 nAμM〜)获得了两个线性范围(-1)厘米〜(-2)。值得注意的是,我们实现了非常低的6.3 nM的检测限,用于检测肼。结果表明,AC / Au纳米复合材料可用于简便,低成本,可重复性和稳定性高的肼检测。此外,该方法用于测定各种水样中的肼,结果令人满意。

著录项

  • 来源
    《Sensors and Actuators 》 |2014年第12期| 382-387| 共6页
  • 作者单位

    Electroanalysis and Bioelectrochemistry Lab, Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, No. 1, Section 3, Chung-Hsiao East Road, Taipei 106, Taiwan, ROC;

    Electroanalysis and Bioelectrochemistry Lab, Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, No. 1, Section 3, Chung-Hsiao East Road, Taipei 106, Taiwan, ROC;

    Electroanalysis and Bioelectrochemistry Lab, Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, No. 1, Section 3, Chung-Hsiao East Road, Taipei 106, Taiwan, ROC;

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

    Activated carbon; Gold nanoparticles; Cyclic voltammetry; amperometry; Hydrazine sensor;

    机译:活性炭;金纳米粒子;循环伏安法;安培法;肼传感器;

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