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Tungsten Carbide Nanotubes Supported Platinum Nanoparticles as a Potential Sensing Platform for Oxalic Acid

机译:碳化钨纳米管支持铂纳米颗粒作为草酸的潜在传感平台

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摘要

Supported tungsten carbide is an efficient and vital nanomaterial for the development of high-performance, sensitive, and selective electrochemical sensors. In this work, tungsten carbide with tube-like nanostructures (WC NTs) supported platinum nanoparticles (PtNPs) are synthesized and explored as an efficient catalyst toward electrochemical oxidation of oxalic acid for the first the time. The WC NTs supported PtNPs modified glassy carbon (GC) electrode is highly sensitive toward the electrochemical oxidation of oxalic acid. A large decrease in the oxidation overpotential (220 mV) and significant enhancement in the peak current compared to unmodified and Pt/C modified GC electrodes have been observed without using any redox mediator. Moreover, WC NTs supported PtNPs modified electrode possessed wide linear concentration ranges from 0 to 125 nM and a higher sensitivity toward the oxidation of oxalic acid (80 nAM) achieved by the amperometry method. The present modified electrode showed an experimentally determined lowest detection limit (LOD) of 12 nM (S/N = 3). Further, WC NTs supported PtNPs electrode can be demonstrated to have an excellent selectivity toward the detection of oxalic acid in the presence of a 200-fold excess of major important interferents. The practical application of WC NTs supported PtNPs has also been demonstrated in the detection of oxalic acid in tomato fruit sample, by differential pulse voltammetry under optimized conditions.
机译:负载的碳化钨是用于开发高性能,灵敏和选择性电化学传感器的高效且至关重要的纳米材料。在这项工作中,首次合成了具有管状纳米结构(WC NTs)负载的铂纳米颗粒(PtNPs)的碳化钨,并首次将其作为一种有效的草酸电化学氧化催化剂。 WC NTs负载的PtNPs修饰的玻碳(GC)电极对草酸的电化学氧化高度敏感。与未修饰的和Pt / C修饰的GC电极相比,未使用任何氧化还原介体的情况下,氧化过电位(220 mV)大大降低,峰值电流显着增强。此外,WC NTs负载的PtNPs修饰电极具有0至125 nM的宽线性浓度范围,并且通过安培法获得的对草酸氧化的敏感性更高(80 nA / nM)。本发明的修饰电极显示出实验确定的最低检测极限(LOD)为12 nM(S / N = 3)。此外,在存在200倍过量的主要重要干扰物的情况下,可以证明WC NTs负载的PtNPs电极对草酸的检测具有极好的选择性。在优化条件下,通过差分脉冲伏安法在番茄果实样品中草酸的检测中也证明了WC NTs支持的PtNPs的实际应用。

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