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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Simultaneous quantification of arginine, alanine, methionine and cysteine amino acids in supplements using a novel bioelectro-nanosensor based on CdSe quantum dot/modified carbon nanotube hollow fiber pencil graphite electrode via Taguchi method
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Simultaneous quantification of arginine, alanine, methionine and cysteine amino acids in supplements using a novel bioelectro-nanosensor based on CdSe quantum dot/modified carbon nanotube hollow fiber pencil graphite electrode via Taguchi method

机译:基于CDSE量子点/改性碳纳米管中空纤维铅笔石墨电极的新型生物电磁纳米传感器同时定量精氨酸,丙氨酸,甲硫氨酸和半胱氨酸氨基酸在补充剂中使用Taguchi方法

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Graphical abstract Display Omitted Highlights ? Fabricated sensor is based on CdSe quantum dot-modified/carbon nanotube-hollow fiber-pencil graphite electrode. ? Target analytes are arginine, alanine, methionine and cysteine amino acids in supplement samples. ? Differential pulse voltammetry was applied for the determination of the analytes. ? The Taguchi’s method was applied to find out the optimum conditions. Abstract A number of four amino acids have been simultaneously determined at CdSe quantum dot-modified/multi-walled carbon nanotube hollow fiber pencil graphite electrode in different bodybuilding supplements. CdSe quantum dots were synthesized and applied to construct a modified carbon nanotube hollow fiber pencil graphite electrode. FT-IR, TEM, XRD and EDAX methods were applied for characterization of the synthesized CdSe QDs. The electro-oxidation of arginine (Arg), alanine (Ala), methionine (Met) and cysteine (Cys) at the surface of the modified electrode was studied. Then the Taguchi’s method was applied using MINITAB 17 software to find out the optimum conditions for the amino acids determination. Under the optimized conditions, the differential pulse (DP) voltammetric peak currents of Arg, Ala, Met and Cys increased linearly with their concentrations in the ranges of 0.287–33670μM and detection limits of 0.081, 0.158, 0.094 and 0.116μM were obtained for them, respectively. Satisfactory results were achieved for calibration and validation sets. The prepared modified electrode represents a very good resolution between the voltammetric peaks of the four amino acids which makes it suitable for the detection of each in presence of others in real samples.
机译:图形抽象显示省略了亮点?制造的传感器基于CDSE量子点改性/碳纳米管中空纤维铅笔石墨电极。还是靶分析物是精氨酸,丙氨酸,甲硫氨酸和半胱氨酸氨基酸中的补充剂样品。还是施加差分脉冲伏安法用于测定分析物。还是TAGUCHI的方法应用于找出最佳条件。摘要在Cdse量子点改性/多壁碳纳米管中空纤维铅笔石墨电极中同时确定了许多四个氨基酸在不同的健身补充剂中。合成CDSE量子点并施加以构建改进的碳纳米管中空纤维铅笔石墨电极。施用FT-IR,TEM,XRD和EDAX方法,以表征合成的CDSE QDS。研究了修饰电极表面上的精氨酸(Arg),丙氨酸(ALA),甲硫氨酸(ALA),甲硫氨酸(MOT)和半胱氨酸(Cys)的电氧化。然后使用Minitab 17软件应用Taguchi的方法,以找出氨基酸测定的最佳条件。在优化的条件下,Arg,Ala,Met和Cys的差分脉冲(DP)伏安峰值电流随着0.287-333670μm的范围内的浓度和0.081,0.158,0.094和0.116μm的浓度增加, 分别。校准和验证集实现了令人满意的结果。制备的改性电极表示四个氨基酸的伏安峰之间的非常好的分辨率,这使得适合于在真实样品中存在每个其他氨基酸的检测。

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