Duan Qunpeng, Wang Lijie, Wang Fei, Zhang Hongsong, Lu Kui
School of Materials and Chemical Engineering, Henan University of Engineering, Zhengzhou, China.
School of Chemical Engineering and Food Science, Zhengzhou Institute of Technology, Zhengzhou, China.
Front Chem. 2020 Jun 4;8:430. doi: 10.3389/fchem.2020.00430. eCollection 2020.
In the present work, we have developed a facile one-step route for preparing electrochemically reduced graphene oxide-cationic pillar[6]arene (ErGO-CP6) nanocomposite films on glassy carbon electrodes (GCEs) directly from graphene oxide-cationic pillar[6]arene (GO-CP6) colloidal solution by using a pulsed electrodeposition technique. The electrocatalytic activity of ErGO-CP6 was examined by studying the oxidations of five purine bases [adenine (A), guanine (G), xanthine (X), hypoxanthine (HX), and uric acid (UA)]. It enhanced the oxidation currents of A, G, X, HX, and UA when compared to unmodified ErGO films and bare GCE, which is considered to be the synergetic effects of the graphene (excellent electrical properties and large surface area) and CP6 molecules (high inclusion complexation and enrichment capability).
在本工作中,我们开发了一种简便的一步法路线,通过脉冲电沉积技术,直接从氧化石墨烯-阳离子柱[6]芳烃(GO-CP6)胶体溶液在玻碳电极(GCE)上制备电化学还原氧化石墨烯-阳离子柱[6]芳烃(ErGO-CP6)纳米复合膜。通过研究五种嘌呤碱[腺嘌呤(A)、鸟嘌呤(G)、黄嘌呤(X)、次黄嘌呤(HX)和尿酸(UA)]的氧化来考察ErGO-CP6的电催化活性。与未修饰的ErGO膜和裸GCE相比,它增强了A、G、X、HX和UA的氧化电流,这被认为是石墨烯(优异的电学性质和大表面积)和CP6分子(高包合络合和富集能力)的协同效应。