利用绿色合成的金属氧化物纳米粒子进行药品中盐酸二甲双胍的电位测定

IF 1.5 4区 化学 Q3 CHEMISTRY, ANALYTICAL
Shikhah Almutairi, Nawal A. Alarfaj, Adibah M. Almutairi, Maha F. El-Tohamy
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The regression equations were <svg height=\"11.9087pt\" style=\"vertical-align:-3.2728pt\" version=\"1.1\" viewbox=\"-0.0498162 -8.6359 21.614 11.9087\" width=\"21.614pt\" xmlns=\"http://www.w3.org/2000/svg\" xmlns:xlink=\"http://www.w3.org/1999/xlink\"><g transform=\"matrix(.013,0,0,-0.013,0,0)\"></path></g><g transform=\"matrix(.0091,0,0,-0.0091,7.943,3.132)\"></path></g><g transform=\"matrix(.0091,0,0,-0.0091,14.537,3.132)\"></path></g></svg> = (52.1 ± 0.5) log (MTF) + 729 for enriched nanometallic oxides, <svg height=\"11.9087pt\" style=\"vertical-align:-3.2728pt\" version=\"1.1\" viewbox=\"-0.0498162 -8.6359 21.614 11.9087\" width=\"21.614pt\" xmlns=\"http://www.w3.org/2000/svg\" xmlns:xlink=\"http://www.w3.org/1999/xlink\"><g transform=\"matrix(.013,0,0,-0.013,0,0)\"><use xlink:href=\"#g113-70\"></use></g><g transform=\"matrix(.0091,0,0,-0.0091,7.943,3.132)\"><use xlink:href=\"#g190-110\"></use></g><g transform=\"matrix(.0091,0,0,-0.0091,14.537,3.132)\"><use xlink:href=\"#g190-87\"></use></g></svg> = (57.04 ± 0.4) log (MTF) + 890.66, and <svg height=\"11.9087pt\" style=\"vertical-align:-3.2728pt\" version=\"1.1\" viewbox=\"-0.0498162 -8.6359 21.614 11.9087\" width=\"21.614pt\" xmlns=\"http://www.w3.org/2000/svg\" xmlns:xlink=\"http://www.w3.org/1999/xlink\"><g transform=\"matrix(.013,0,0,-0.013,0,0)\"><use xlink:href=\"#g113-70\"></use></g><g transform=\"matrix(.0091,0,0,-0.0091,7.943,3.132)\"><use xlink:href=\"#g190-110\"></use></g><g transform=\"matrix(.0091,0,0,-0.0091,14.537,3.132)\"><use xlink:href=\"#g190-87\"></use></g></svg> = (58.27 ± 0.7) log (MTF) + 843.27 with correlation coefficients of 0.9991, 0.9997, and 0.9998 for the aforementioned sensors, respectively. 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引用次数: 0

摘要

Al2O3 和 NiO 纳米粒子具有先进的高功能特性,促进了金属氧化物作为非凡电活性材料在传感和电化学应用中的广泛应用。本研究描述了富含 Al2O3 和 NiO 纳米粒子的两种改性金属丝膜传感器与传统金属丝膜在定量检测抗糖尿病药物盐酸二甲双胍 (MTF) 的灵敏度和选择性方面的比较。结果表明,在 1.0 × 10-10-1.0 × 10-2 mol L-1 和 1.0 × 10-6-1.0 × 10-2 M 的浓度范围内,富集的 Al2O3 和 NiO 纳米传感器与传统的涂覆金属丝膜传感器均呈线性关系。富集纳米金属氧化物的回归方程分别为 = (52.1 ± 0.5) log (MTF) + 729、= (57.04 ± 0.4) log (MTF) + 890.66 和 = (58.27 ± 0.7) log (MTF) + 843.27,相关系数分别为 0.9991、0.9997 和 0.9998。所提出的方法完全符合国际纯粹与应用化学联合会(IUPAC)的建议。新功能化的传感器已成功用于测定商业产品中的 MTF。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploiting of Green Synthesized Metal Oxide Nanoparticles in the Potentiometric Determination of Metformin Hydrochloride in Pharmaceutical Products
The advanced and highly functional properties of Al2O3 and NiO nanoparticles promote the widespread use of metal oxides as remarkable electroactive materials for sensing and electrochemical applications. The proposed study describes a comparison of the sensitivity and selectivity of two modified wire membrane sensors enriched with Al2O3 and NiO nanoparticles with conventional wire membranes for the quantification of the antidiabetic drug metformin hydrochloride (MTF). The results show linear relationships of the enriched Al2O3 and NiO nanosensors over the concentration ranges 1.0 × 10−10–1.0 × 10−2 mol L−1 and 1.0 × 10−6–1.0 × 10−2 M for both the modified sensors and the conventional coated wire membrane sensors. The regression equations were  = (52.1 ± 0.5) log (MTF) + 729 for enriched nanometallic oxides,  = (57.04 ± 0.4) log (MTF) + 890.66, and  = (58.27 ± 0.7) log (MTF) + 843.27 with correlation coefficients of 0.9991, 0.9997, and 0.9998 for the aforementioned sensors, respectively. The proposed method was fully validated with respect to the recommendations of the International Union of Pure and Applied Chemistry (IUPAC). The newly functionalized sensors have been successfully used for the determination of MTF in its commercial products.
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来源期刊
CiteScore
3.10
自引率
5.60%
发文量
117
期刊介绍: International Journal of Analytical Chemistry publishes original research articles that report new experimental results and methods, especially in relation to important analytes, difficult matrices, and topical samples. Investigations may be fundamental, or else related to specific applications; examples being biological, environmental and food testing, and analysis in chemical synthesis and materials processing. As well as original research, the International Journal of Analytical Chemistry also publishes focused review articles that examine the state of the art, identify emerging trends, and suggest future directions for developing fields.
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