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首页> 外文期刊>ACS Omega >Doped SnO2 Nanomaterials for E-Nose Based Electrochemical Sensing of Biomarkers of Lung Cancer
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Doped SnO2 Nanomaterials for E-Nose Based Electrochemical Sensing of Biomarkers of Lung Cancer

机译:掺杂的SnO2纳米材料用于肺癌生物标志物的E-鼻电化学感应

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Lung cancer detection includes detection of a pattern formed by multiple volatile organic compounds. An individual material has limited selectivity and hence requires tailoring to improve the selectivity and sensing properties. An electronic nose (e-nose) is a concept/device that can help in achieving selectivity and specificity for multiple volatile organic compounds at the same time by using an array of sensors. In this paper, Co and Ni doping in tin oxide was used to investigate as a sensor material for e-nose development. These were synthesized using a sol–gel method and were characterized for structural, morphological, and elemental assessment using X-ray diffraction, field emission scanning electron microscopy, and Fourier transform infrared spectroscopy, which indicated the formation of the composite nanomaterial of SnO_(2). These synthesized materials were then used as a working electrode in the form of a screen-printed electrode to determine 1-propanol and isopropyl alcohol (IPA) sensing characteristics. Electrochemical characterization was done by cyclic voltammetry (CV) and electrochemical impedance spectroscopy. In the case of CV studies, well-defined and distinct redox peaks are observed at different potential values indicating the changes due to the dopants. Ni doping in SnO_(2) shows the highest sensitivity of 2.99 μA/ppb for isopropyl alcohol and 3.11 for 1-propanol, within the detection range. Furthermore, Co–SnO_(2) shows selectivity for IPA, while Ni–SnO_(2) is selective to 1-propanol against all other volatile compounds analyzed.
机译:肺癌检测包括检测由多个挥发性有机化合物形成的图案。单个材料具有有限的选择性,因此需要剪裁以改善选择性和感测性质。电子鼻子(E-鼻子)是一种概念/装置,可以通过使用传感器阵列在同时实现多个挥发性有机化合物的选择性和特异性。在本文中,使用氧化锡中的CO和Ni掺杂作为电子鼻部发育的传感器材料。这些是使用溶胶 - 凝胶法合成的,具有使用X射线衍射,场发射扫描电子显微镜和傅里叶变换红外光谱的结构,形态学和元素评估,表明形成SnO_的复合纳米材料(2 )。然后将这些合成的材料用作丝网印刷电极形式的工作电极,以确定1-丙醇和异丙醇(IPA)感测特性。通过循环伏安法(CV)和电化学阻抗光谱完成电化学表征。在CV研究的情况下,在不同潜在的值下观察到明确明确的氧化还原峰,表示由于掺杂剂引起的变化。在SnO_(2)中的Ni掺杂显示出在检测范围内的2.99μA/ ppb的最高敏感性,对于1-丙醇,3.11,在检测范围内。此外,共存(2)显示IPA的选择性,而Ni-SnO_(2)选择性地对分析的所有其他挥发性化合物选择1-丙醇。

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