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Phthalocyanine Doped Metal Oxide Nanoparticles on Multiwalled Carbon Nanotubes Platform for the detection of Dopamine

机译:多壁碳纳米管平台上酞菁掺杂的金属氧化物纳米粒子用于检测多巴胺

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摘要

The electrocatalytic properties of metal oxides (MO = Fe3O4, ZnO) nanoparticles doped phthalocyanine (Pc) and functionalized MWCNTs, decorated on glassy carbon electrode (GCE) was investigated. Successful synthesis of the metal oxide nanoparticles and the MO/Pc/MWCNT composite were confirmed using UV-Vis, EDX, XRD and TEM techniques. Successful modification of GCE with the MO and their composite was also confirmed using cyclic voltammetry (CV) technique. GCE-MWCNT/ZnO/29H,31H-Pc was the best electrode towards DA detection with very low detection limit (0.75 μM) which compared favourably with literature, good sensitivity (1.45 μA/μM), resistance to electrode fouling, and excellent ability to detect DA without interference from AA signal. Electrocatalytic oxidation of DA on GCE-MWCNT/ZnO/29H,31H-Pc electrode was diffusion controlled but characterized with some adsorption of electro-oxidation reaction intermediates products. The fabricated sensors are easy to prepare, cost effective and can be applied for real sample analysis of dopamine in drug composition. The good electrocatalytic properties of 29H,31H-Pc and 2,3-Nc were related to their (quantum chemically derived) frontier molecular orbital energies and global electronegativities. The better performance of 29H,31H-Pc than 2,3-Nc in aiding electrochemical oxidation of DA might be due to its better electron accepting ability, which is inferred from its lower ELUMO and higher χ.
机译:研究了修饰在玻璃碳电极(GCE)上的金属氧化物(MO = Fe3O4,ZnO)掺杂酞菁(Pc)和功能化的MWCNTs的电催化性能。使用UV-Vis,EDX,XRD和TEM技术证实了金属氧化物纳米颗粒和MO / Pc / MWCNT复合材料的成功合成。还使用循环伏安法(CV)技术证实了MO和其复合物对GCE的成功改性。 GCE-MWCNT / ZnO / 29H,31H-Pc是检测DA的最佳电极,检出限非常低(0.75μM),与文献报道相比具有良好的灵敏度,良好的灵敏度(1.45 A /μM),耐电极结垢性和出色的能力以检测DA而不受到AA信号的干扰。 DA在GCE-MWCNT / ZnO / 29H,31H-Pc电极上的电催化氧化是扩散控制的,但具有一定的吸附电氧化反应中间体的特征。所制造的传感器易于制备,具有成本效益,并可用于药物组合物中多巴胺的真实样品分析。 29H,31H-Pc和2,3-Nc的良好电催化性能与其(量子化学衍生的)前沿分子轨道能和整体电负性有关。 29H,31H-Pc比2,3-Nc更好的辅助DA的电化学氧化可能是由于其更好的电子接受能力,这是由其较低的ELUMO和较高的χ推断的。

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