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Detection of Acetylcholine in an Enzyme-Free System Based on a GCE/V2O5 NRs/BPM Modified Sensor

机译:基于GCE/V2O5 NRS/BPM修饰传感器的无酶系统中乙酰胆碱的检测

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摘要

In this approach, vanadium pentoxide nanorods (V2O5 NRs) were prepared by utilizing a facile wet-chemical approach (WCA) in an alkaline phase at low temperatures then applied to detect acetylcholine. Various optical techniques, such as UltraViolet spectroscopy (UV-Visible), Fourier Transform Infra-red spectroscopy (FTIR), Powder X-ray Diffraction (XRD), Field Emission Scanning Emission Microscopy (FESEM), X-ray Electron Dispersive Spectroscopy (XEDS) and X-ray Photo-electron Spectroscopy (XPS) were applied to analyse the V2O5 NRs for structural, optical, functional, morphological and elemental analyses. Adjustment of the light weight fabrication of NRs onto Glassy carbon electrode (GCE) exhibited sensitive and selective acetylcholine sensor probe. Based on the stable current-voltage relationship, analytical sensing parameters like sensitivity, Linear dynamic range (LDR), Limit of detection (LOD), Limit of quantification (LOQ), durability and interference measurement of the fabricated sensor (GCE/V2O5 NRs/BPM) for acetylcholine detection were evaluated and reported in this paper. Here, Nafion was used as a binding polymer matrix (BPM) for the fabrication of flat GCE with V2O5 NRs. Acetylcholine calibration curve was found to be linear throughout in a broad range of concentration of target acetylcholine analyte. Calibration curve was employed to calculate the sensing parameters such as sensitivity (101.27 nAμM~(-1)cm~(-2)), LOD down to 11.58 pM, LOQ (38.60 pM) and LDR (100 pM~ 100 μM) of the developed GCE/V2O5 NRs/BPM sensor probe. The use of the facile WCA method for the synthesis of low-dimensional V2O5 NRs is a good strategy for developing an un-doped nano-material based sensor for enzyme-free bio-molecule recognition and detection via this electrochemical approach. The developed (GCE/V2O5 NRs/BPM) sensor probe could be used to selectively detect acetylcholine in real biological samples by electrochemical method with satisfactory outcomes.
机译:在这种方法中,通过在低温下在碱性相中利用易于湿化学方法(WCA)来制备五氧化聚氧化聚氧化氢盐(V2O5 NRS),然后应用于检测乙酰胆碱。各种光学技术,例如紫外光谱(UV-可见),傅立叶变换红外光谱(FTIR),粉末X射线衍射(XRD),田间发射扫描发射显微镜(FESEM),X射线电子分散光谱(XEDS)(XEDS) )和X射线光电光谱(XPS)用于分析V2O5 NRS的结构,光学,功能,形态和元素分析。调整NRS在玻璃碳电极(GCE)上的轻质制造表现出敏感和选择性的乙酰胆碱传感器探针。基于稳定的电流 - 电压关系,分析传感参数(如灵敏度,线性动态范围(LDR),检测极限(LOD),定量极限(LOQ),耐用性和干扰测量器(GCE/V2O5 NRS/V2O5 NRS//在本文中评估并报告了用于乙酰胆碱检测的BPM)。在这里,Nafion用作用V2O5 NRS制造Flat GCE的结合聚合物基质(BPM)。发现乙酰胆碱校准曲线在整个靶乙酰胆碱分析物浓度范围内是线性的。采用校准曲线来计算感应参数,例如灵敏度(101.27 naμm〜(-1)cm〜(-2)),降低至11.58 pm,LOQ(38.60 pm)和LDR(100 pm〜100 pm〜100μm)开发了GCE/V2O5 NRS/BPM传感器探针。使用便利的WCA方法用于合成低维的V2O5 NRS是开发未掺杂的基于纳米材料的传感器的好策略,以通过这种电化学方法通过这种无酶的生物分子识别和检测。开发的(GCE/V2O5 NRS/BPM)传感器探针可用于通过具有令人满意的结果的电化学方法选择性地检测实际生物样品中的乙酰胆碱。

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  • 来源
    《Chemistry Select》 |2022年第22期|共12页
  • 作者单位

    Chemistry Department, Faculty of Science, King Abdulaziz University, Jeddah 21589, P.O. Box 80203, Saudi Arabia;

    Electrochemistry & Catalysis Research Laboratory (ECRL), Department of Chemistry, School of Physical Sciences, Shahjalal University of Science and Technology, Sylhet-3100, Bangladesh;

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  • 正文语种 英语
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