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Fabrication of 3-methoxyphenol sensor based on Fe3O4 decorated carbon nanotube nanocomposites for environmental safety: Real sample analyses

机译:基于Fe3O4装饰的碳纳米管纳米复合材料的3-甲氧基苯酚传感器的环境安全性:真实样品分析

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摘要

Iron oxide ornamented carbon nanotube nanocomposites (Fe3O4.CNT NCs) were prepared by a wet-chemical process in basic means. The optical, morphological, and structural characterizations of Fe3O4.CNT NCs were performed using FTIR, UV/Vis., FESEM, TEM; XEDS, XPS, and XRD respectively. Flat GCE had been fabricated with a thin-layer of NCs using a coating binding agent. It was performed for the chemical sensor development by a dependable I-V technique. Among all interfering analytes, 3-methoxyphenol (3-MP) was selective towards the fabricated sensor. Increased electrochemical performances for example elevated sensitivity, linear dynamic range (LDR) and continuing steadiness towards selective 3-MP had been observed with chemical sensor. The calibration graph found linear (R2 = 0.9340) in a wide range of 3-MP concentration (90.0 pM ~ 90.0 mM). The limit of detection and sensitivity were considered as 1.0 pM and 9×10−4 μAμM-1cm-2 respectively. The prepared of Fe3O4.CNT NCs by a wet-chemical progression is an interesting route for the development of hazardous phenolic sensor based on nanocomposite materials. It is also recommended that 3-MP sensor is exhibited a promising performances based on Fe3O4.CNT NCs by a facile I-V method for the significant applications of toxic chemicals for the safety of environmental and health-care fields.
机译:通过湿化学法以基本方式制备了氧化铁装饰的碳纳米管纳米复合材料(Fe3O4.CNT NCs)。 Fe3O4.CNT NCs的光学,形态和结构表征使用FTIR,UV / Vis。,FESEM,TEM进行; XEDS,XPS和XRD。平板GCE已使用涂层粘合剂与一薄层NC一起制成。它是通过可靠的I-V技术进行化学传感器开发的。在所有干扰分析物中,3-甲氧基苯酚(3-MP)对制成的传感器具有选择性。使用化学传感器可以观察到电化学性能的提高,例如灵敏度提高,线性动态范围(LDR)以及对选择性3-MP的持续稳定性。校正图在3-MP浓度范围较大(90.0 pM〜90.0 mM)下发现线性(R 2 = 0.9340)。检测限和灵敏度分别为1.0 pM和9×10 −4 μAμM -1 cm -2 。通过湿化学过程制备Fe3O4.CNT NCs是开发基于纳米复合材料的危险酚醛传感器的有趣途径。还建议通过简便的I-V方法将3-MP传感器表现出基于Fe3O4.CNT NC的有前途的性能,以用于有毒化学品的大量应用,以确保环境和医疗保健领域的安全。

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