Fabrication of Superhydrophobic Ti/SnO2-Sb/α-PbO2/Fe-β-PbO2-PTFE Electrode and Application in Wastewater Treatment
Autor: | Zhaobin Zhang, Yuanzeng Jin, Hui Tong, Wanxian Cai, Xingfu Zhou, Chao Yang, Yanqi Lv |
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Rok vydání: | 2020 |
Předmět: |
010302 applied physics
Electrolysis Materials science Oxygen evolution 02 engineering and technology Overpotential 021001 nanoscience & nanotechnology Condensed Matter Physics 01 natural sciences Electronic Optical and Magnetic Materials law.invention Contact angle chemistry.chemical_compound chemistry Chemical engineering law Saturated calomel electrode 0103 physical sciences Electrode Materials Chemistry Methyl orange Electrical and Electronic Engineering 0210 nano-technology Electroplating |
Zdroj: | Journal of Electronic Materials. 49:2411-2418 |
ISSN: | 1543-186X 0361-5235 |
DOI: | 10.1007/s11664-019-07936-7 |
Popis: | SnO2-Sb and α-PbO2 have been successively deposited onto the surface of a titanium substrate, followed by fabrication of β-PbO2 doped with Fe element and polytetrafluoroethylene (PTFE) thereon. Due to the collaborative contribution of α-PbO2 and PTFE, the stability of the Ti/SnO2-Sb/α-PbO2/Fe-β-PbO2-PTFE electrode was found to be significantly improved. The oxygen evolution overpotential of the electrode was measured to be 1.95 V versus saturated calomel electrode (SCE). Also, the contact angle of the optimized superhydrophobic electrode reached 156.8°. The optimized superhydrophobic electrode modified with PTFE exhibited lower charge-transfer resistance and good oxidative ability towards organics. The electrocatalytic activity of the devised electrodes was studied using methyl orange degradation. Factors affecting the decolorization of methyl orange were optimized. After 30 min of electrolysis, a maximum removal efficiency of 83% was achieved at a current density of 30 mA cm−2 for an initial methyl orange concentration of 40 mg L−1 at pH 5. The results confirmed that the decolorization followed a first-order kinetics model. The color of the methyl orange solution changed from orange to colorless upon completion of the degradation reaction. Such superhydrophobic Ti/SnO2-Sb/α-PbO2/Fe-β-PbO2-PTFE electrodes could effectively degrade organic pollutants under low voltages, which is of great significance for reducing energy consumption. |
Databáze: | OpenAIRE |
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