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Pd@TTF Tailored Nanostructured Platform: Voltammetric Estimation of Ceftazidime

机译:PD@TTF量身定制的纳米结构平台:头孢汇集的伏安估计

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摘要

Herein, we report the synthesis of tetrathiafulvalene stabilized palladium nanocomposite (Pd@TTF) through one-step simple chemical route without using any external reducing agent. Prepared Pd@TTF was further used for the electrochemical determination of ceftazidime (CFZ). A possible interaction mechanism has been proposed for the formation of palladium NPs sandwiched between TTF radical cations (Pd@TTF). Asprepared Pd@TTF are characterized by using various techniques to investigate its structural, optical, and electrochemical properties The interaction of drug molecules with Pd@TTF is utilized in sensing of the drug using voltammetric techniques. The limit of detection (LOD) of CFZ is achieved up to 0.5 mM. The Pd@TTF modified sensor probe is successfully used for the determination of CFZ in the commercially available CFZ injection.
机译:本文中,我们通过一步简单的化学途径(无需使用任何外部还原剂),报告了四硫酸盐稳定钯纳米复合材料(PD@ttf)的合成。 制备的PD@TTF进一步用于头孢汇体(CFZ)的电化学测定。 已经提出了一种可能的相互作用机制,以形成夹在TTF自由基阳离子(PD@TTF)之间的钯NP。 Aspreed PD@TTF的特征是使用各种技术研究其结构,光学和电化学特性。使用伏安术技术,使用药物分子与PD@TTF的PD@TTF的相互作用。 CFZ的检测极限(LOD)达到高达0.5 mm。 PD@TTF修改传感器探针成功地用于确定市售CFZ注入中的CFZ。

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