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首页> 外文期刊>Analytical Sciences >Highly Sensitive Electrochemical Detection of Folic Acid by Using a Hollow Carbon Nanospheres@molybdenum Disulfide Modified Electrode
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Highly Sensitive Electrochemical Detection of Folic Acid by Using a Hollow Carbon Nanospheres@molybdenum Disulfide Modified Electrode

机译:通过使用中空碳纳米球的高敏感的电化学检测叶酸钼二硫化物改性电极

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As a nutrient in body functions, folic acid (FA) plays a very important role for human health, and thus developing a highly sensitive method for its determination is of great significance. In the present work, carbon hollow nanospheres decorated with molybdenum disulfide nanosheets (CHN@MoS_(2)) nanomaterials were produced through a simple method and adopted to modify a glassy carbon electrode for assembling a highly sensitive electrochemical sensor of FA. After characterizing the prepared nanomaterials using scanning-/transmission-electron microscopy and Raman spectra, as well as optimizing various testing conditions, including the pH value of the buffer solution, the accumulation time and amount of nanomaterials on electrode surface, and the electrochemical determination of FA was carried out using a CHN@MoS_(2) electrode. Owing to the coordinative advantages from CHN and MoS_(2), the results show that CHN@MoS_(2) exhibits excellent sensing responses for FA, and it has a wide linear range from 0.08 to 10.0 μM coupled with a low detection limit of 0.02 μM. Finally, the proposed method for FA detection was successfully applied in human urine analysis. The obtained results are satisfactory, revealing that the developed method based on CHN@MoS_(2) nanomaterials has important applications for FA determination.
机译:作为身体功能的营养素,叶酸(FA)对人体健康起到非常重要的作用,从而为其测定产生高度敏感的方法具有重要意义。在本作本作中,通过一种简单的方法生产用钼二硫化钼纳米片(CHN @ MOS_(2))纳米材料装饰的碳中空纳米球(CHN @ MOS_(2))纳米材料,并采用以改变玻璃碳电极来组装FA的高敏感电化学传感器。在使用扫描/透射电子显微镜和拉曼光谱表征制备的纳米材料之后,以及优化各种测试条件,包括缓冲溶液的pH值,电极表面上的纳米材料的累积时间和量,以及电化学测定使用CHN @ MOS_(2)电极进行FA。由于CHN和MOS_(2)的协调优势,结果表明CHN @ MOS_(2)对FA表现出优异的感应响应,并且它的宽线性范围为0.08至10.0μm的宽度检测限为0.02 μm。最后,在人类尿液分析中成功地应用了FA检测方法。所获得的结果令人满意,揭示了基于CHN @ MOS_(2)纳米材料的开发方法对FA确定具有重要应用。

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