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Nanostructured silver doped TiO2/CNTs hybrid as an efficient electrochemical sensor for detection of anti-inflammatory drug, cetirizine

机译:纳米结构银掺杂TiO2 / CNTS杂交作为一种有效的电化学传感器,用于检测抗炎药,Cetirizine

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摘要

For developing a promising sensor, sensitivity and selectivity are the most critical key issues. In efforts to develop novel sensor materials, various types of modifiers such as carbon nanotubes, transition metals, semiconductors, and graphene have been utilized in the electrode system. In this study, a novel and highly efficient electrochemical nanosensor was fabricated using a combination of silver-doped titanium dioxide nanoparticles (AgTiO2) and multi-walled carbon nanotubes (MWCNTs) for the sensitive detection of cetirizine (CTZ), an anti-inflammatory drug. The complete electrochemical detection of CTZ was examined in basic pH 8.0 media by voltammetry techniques. The prepared Ag-TiO2/MWCNTs nanocomposite demonstrated an exceptional electrocatalytic performance for CTZ in contrast to the pristine electrode due to nano-Ag-TiO(2)and MWCNTs. Further, the electrode assembly showed CTZ electrooxidation in a linear fashion with a lower detection limit of 8.76 nM. The electrochemical oxidation of CTZ has been carried out using cyclic voltammetry (CV), Square wave voltammetry (SWV) techniques. The significance of the present technique is its sensitivity response towards CTZ detection and its assessment. The described method has been applied for the determination of CTZ in pharmaceutical formulations and urine samples. Good recovery values suggest applicability, effectiveness, and reliability of the sensor for determination of CTZ.
机译:对于开发有前途的传感器,灵敏度和选择性是最关键的关键问题。在开发新型传感器材料的努力中,在电极系统中已经利用了各种类型的改性剂如碳纳米管,过渡金属,半导体和石墨烯。在该研究中,使用用于敏感的抗炎药物(CTZ)的敏感性检测,使用掺杂银掺杂二氧化钛二氧化钛纳米颗粒(AgTiO2)和多壁碳纳米管(MWCNT)的组合来制造一种新颖且高效的电化学纳米传感器。 。通过伏安法技术在碱性pH 8.0培养基中检查CTZ的完全电化学检测。制备的Ag-TiO 2 / MWCNT纳米复合材料表明,由于纳米 - Ag-TiO(2)和MWCNTs,与原始电极相反,CTZ的卓越电催化性能。此外,电极组件以线性方式显示CTZ电氧化,检测限为8.76nm。 CTZ的电化学氧化已经使用循环伏安法(CV),方波伏安法(SWV)技术进行。本技术的重要性是对CTZ检测的敏感性和评估。所述方法已被应用于药物制剂中CTZ的测定和尿液样品。良好的恢复值表明传感器的适用性,有效性和可靠性确定CTZ。

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