Synergistic effect of a cobalt fluoroporphyrin and graphene oxide on the simultaneous voltammetric determination of catechol and hydroquinone

被引:0
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作者
Dong-Lan Huang
Jian Wang
Fan Cheng
Atif Ali
Hui-Shi Guo
Xiao Ying
Li-Ping Si
Hai-Yang Liu
机构
[1] South China University of Technology,Department of Chemistry, The Key Laboratory of Fuel Cell Technology of Guangdong Province
[2] Shaoguan University,College of Chemistry and Environmental Engineering
[3] South China University of Technology,Department of Applied Physics
[4] Foshan University,School of Materials Science and Energy Engineering
来源
Microchimica Acta | 2019年 / 186卷
关键词
Carbon-based material; Electrochemical sensor; Metalloporphyrin; Electropolymerization; Electrochemical impedance spectroscopy; Dihydroxybenzene isomers; Cyclic voltammetry; Differential pulse voltammetry;
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摘要
Graphene oxide (GO) was modified with the cobalt(II) and zinc(II) complexes (CoTFPP and ZnTFPP) of 5,10,15,20-tetrakis(pentafluorophenyl)porphyrin in order to improve the electrocatalytic activity of GO towards catechol (CC) and hydroquinone (HQ). It is found that the CoTFPP-modified GO on a glassy carbon electrode (GCE) displays the highest electrocatalytic activity. The response to CC (at 0.14 V vs. SCE) is linear in the 1–220 μM concentration range. The response to HQ (at 0.04 V vs. SCE) extends from 1 μM to 200 μM. The sensitivity and detection limits are 10.40 μA∙μM−1∙cm−2 and 0.17 μM for CC, and 8.40 μA∙μM−1∙cm−2 and 0.21 μM for HQ. Experimental results indicate that the Co(II) and Zn(II) ions in the porphyrins positively affect the electron transfer rate in the hybrid materials. The GCE modified with CoTFPP/GO was successfully applied to the simultaneous determination of CC and HQ in spiked samples of tap and lake water.
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