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Selective and High-Performance Electrochemical Sensor for Cadmium Ions Based on Intimate Binary Spinel CoMn2O4 Nanostructures

机译:基于亲密的二元旋转Comn2O4纳米结构的镉离子的选择性和高性能电化学传感器

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摘要

Due to an exponential increase in the industrialization and processing of raw materials had duly resulted in the rapid contamination of heavy metals in the land and water. For the sustainable ecosystem and high standard human life, an analytical quantification of cadmium in drinking water, choc- olates, drinks and other environmental systems is of greater importance. The current public welfare sector is in high demand for the rational design and fabrication of the economical, user friendly and point of care device for the sensing of toxic heavy metal cadmium in water. In combination with high sensing performance, the sensor must also be highly robust, selective and good reproducibility upon detection. With the understanding of the facts, we report a novel and direct electrochemical based sensing of cadmium ions based on CoMn2O4 nanostructures in the water. Linear Sweep Voltamme- try (LSV) was employed for the investigation of cadmium ions detection at a lower concentration for the unswerving electro- chemical sensing on a CoMn2O4 nanostructure matrix. Since, the LSV works on the unidirectional sweep principle it eliminates the possible interference of other elements during the reverse sweep.
机译:由于对原材料的工业化和加工的指数呈指数增长,因此适当地导致了土地和水中重金属的迅速污染。对于可持续生态系统和高标准人类生活,对饮用水,巧克力,饮料和其他环境系统中镉的分析定量更为重要。目前的公共福利部门对经济,用户友好和护理设备的理性设计和制造有很高的需求,以感知水中有毒重金属镉。结合高传感性能,传感器在检测后也必须高度稳健,选择性和良好的可重复性。鉴于对事实的理解,我们报告了基于水中Comn2O4纳米结构的镉离子的新颖而直接的电化学感测。线性扫描伏安(LSV)用于研究comn2O4纳米结构矩阵上不合转的电化感应的镉离子检测。由于,LSV在单向扫描原理上起作用,因此消除了反向扫描过程中其他元素的可能干扰。

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