Department of Chemistry, University of Sistan and Baluchestan, Iran.
Chemosphere. 2022 Feb;289:133114. doi: 10.1016/j.chemosphere.2021.133114. Epub 2021 Nov 30.
In this work, the synergic impact of 1-ethyl-3-methylimidazolium methyl sulfate (EMMS) and NiO doped Pt decorated SWCNTs (NiO@Pt/SWCNTs) in carbon paste matrix was examined as an analytical tool for investigating electrochemical behavior of atropine. The voltammetric results revealed that NiO@Pt/SWCNTs/EMMS/CPE exhibited an excellent electrocatalytic activity towards redox reaction of atropine in aqueous solution pH = 10.0. The NiO@Pt/SWCNTs/EMMS/CPE offered the best electro-analytical conditions for monitoring of atropine in the concentration range of 4.0 nM-220 μM with an increase in oxidation current about 5.93 times. On the other hand, NiO@Pt/SWCNTs/EMMS/CPE displayed a long time stability (about 60 days) for monitoring of atropine. The ability of NiO@Pt/SWCNTs/EMMS/CPE as an electroanalytical tool for monitoring of atropine was investigated, and the recovery range was detected as to be 97.6%-104.25% for this goal.
在这项工作中,研究了 1-乙基-3-甲基咪唑硫酸甲酯(EMMS)和 NiO 掺杂 Pt 修饰的单壁碳纳米管(NiO@Pt/SWCNTs)在碳糊基质中的协同影响,作为研究莨菪碱电化学行为的分析工具。伏安法结果表明,NiO@Pt/SWCNTs/EMMS/CPE 对水溶液 pH=10.0 中莨菪碱的氧化还原反应表现出优异的电催化活性。NiO@Pt/SWCNTs/EMMS/CPE 提供了监测浓度范围为 4.0 nM-220 μM 内的莨菪碱的最佳电分析条件,氧化电流增加了约 5.93 倍。另一方面,NiO@Pt/SWCNTs/EMMS/CPE 对监测莨菪碱具有较长的时间稳定性(约 60 天)。研究了 NiO@Pt/SWCNTs/EMMS/CPE 作为监测莨菪碱的电分析工具的能力,并检测到该目标的回收率范围为 97.6%-104.25%。