Wang Cunli, Zhu Fudan, Yu Zhe, Zhou Xian, Cheng Wenjing, Yang Fengchun, Zhang Xin
Key Laboratory of Synthetic and Natural Functional Molecule Chemistry of Ministry of Education, National Demonstration Center for Experimental Chemistry Education, College of Chemistry & Material Science, Northwest University, Xi'an 710127, China.
Analyst. 2021 Nov 8;146(22):6846-6851. doi: 10.1039/d1an01342d.
The preparation of ideal sensing materials is of great significance for the realization of high-performance electrochemical analysis. However, in previous methods, most electrode materials are firstly synthesized and dispersed, finally dropped on the electrode surface, which led to complicated operation and poor adhesion between the materials and electrode surface. In this study, a PEDOT-CNT hybrid film has been prepared by combining carboxylated carbon nanotubes as dopants with PEDOT through scalable and easy-to-operate electrochemical deposition. The PEDOT-CNT modified electrode shows excellent performance for the determination of tertiary butylhydroquinone, with a wide linear range of 0.5-820 μM, a low detection limit of 0.12 μM, high stability and reproducibility. In addition, the mechanism of electrodeposition of CNTs and tertiary butylhydroquinone has also been discussed briefly. The PEDOT-CNT hybrid film possesses the preeminent sensing capacity in monitoring tertiary butylhydroquinone, providing research clues for the design and development of new electrode materials in the future.
制备理想的传感材料对于实现高性能电化学分析具有重要意义。然而,在以往的方法中,大多数电极材料首先被合成和分散,最后滴涂在电极表面,这导致操作复杂且材料与电极表面之间的附着力较差。在本研究中,通过将羧基化碳纳米管作为掺杂剂与聚3,4-乙撑二氧噻吩(PEDOT)通过可扩展且易于操作的电化学沉积相结合,制备了一种PEDOT-碳纳米管(CNT)混合膜。PEDOT-CNT修饰电极在叔丁基对苯二酚的测定中表现出优异的性能,线性范围宽达0.5 - 820 μM,检测限低至0.12 μM,具有高稳定性和重现性。此外,还简要讨论了碳纳米管和叔丁基对苯二酚的电沉积机理。PEDOT-CNT混合膜在监测叔丁基对苯二酚方面具有卓越的传感能力,为未来新型电极材料的设计和开发提供了研究线索。