Highly efficient nanostructured CoFe2O4 thin film electrodes for electrochemical degradation of rhodamine B

被引:28
作者
Labchir, Nabil [1 ,2 ]
Amaterz, Elhassan [3 ]
Hannour, Abdelkrim [2 ]
hssi, Abderrahim Ait [2 ]
Vincent, Didier [1 ]
Ihlal, Ahmed [2 ]
Sajieddine, Mohammed [4 ]
机构
[1] Univ Lyon, CNRS, UJM St Etienne, LabHC UMR 5516, F-4203 St Etienne, France
[2] Fac Sci, Mat & Renewable Energies Lab, Agadir, Morocco
[3] Univ Ibn Zohr, Fac Sci, Mat & Environm LME Lab, Agadir, Morocco
[4] Univ Sultan Moulay Slimane, Mat Phys Lab, FST, Beni Mellal, Morocco
关键词
CoFe2O4; degradation; electro-catalysis; electrodeposition; rhodamine B; thin film; COBALT FERRITE NANOPARTICLES; POLYOXOMETALATE; PHOTOCATALYST; PERFORMANCE; POLLUTANTS; CATALYST; DYES;
D O I
10.1002/wer.1272
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In this work, we report the application of highly efficient electrodeposited cobalt ferrite (CoFe2O4) thin films in electrochemical degradation of rhodamine B. XRD, FTIR and Raman spectroscopic studies confirmed the formation of single phase CoFe2O4. SEM analysis revealed a very fine nanorods dispersed uniformly with average size around 30 nm. UV-Vis spectrophotometry emphasized that the optical band gap value is 1.6 eV. Moreover, the elaborated CoFe2O4 thin films showed a good efficiency for the electrochemical degradation of an aqueous solution of rhodamine B (RhB) attaining 99% during the first 3 min of reaction time. The trapping experiments revealed that the hydroxyl radicals were the main active species leading to the removal of RhB initial concentration of 10 mg/L in a very short time. Practitioner points A simple electrodeposition technique was used to fabricate CoFe2O4 thin. XRD and FTIR studies revealed the formation of pure cubic spinel phase. Nano-rod like morphology has been successfully synthesized. The rhodamine B aqueous solution has been completely decolorized using the obtained CoFe2O4 thin films.
引用
收藏
页码:759 / 765
页数:7
相关论文
共 50 条
[11]   Highly Efficient Nanostructured Bi2WO6 Thin Film Electrodes for Photoelectrochemical and Environment Remediation [J].
Alfaifi, Bandar Y. ;
Bayahia, Hossein ;
Tahir, Asif Ali .
NANOMATERIALS, 2019, 9 (05)
[12]   Role of Interfaces in Nanostructured CoFe2O4 films [J].
Axelsson, Anna-Karin ;
Aguesse, Frederic ;
Alford, Neil McN ;
Valant, Matjaz .
2012 INTERNATIONAL SYMPOSIUM ON APPLICATIONS OF FERROELECTRICS HELD JOINTLY WITH 11TH IEEE ECAPD AND IEEE PFM (ISAF/ECAPD/PFM), 2012,
[13]   Electrochemical properties of CoFe2O4 prepared by sol-gel route. Sono-photocatalysis degradation of Rhodamine B by solar light [J].
Sahmi, A. ;
Bensadok, K. ;
Trari, M. .
REACTION KINETICS MECHANISMS AND CATALYSIS, 2024, 137 (03) :1823-1837
[14]   Highly efficient degradation of sulfamethoxazole (SMX) by activating peroxymonosulfate (PMS) with CoFe2O4 in a wide pH range [J].
Li, Yinghao ;
Zhu, Wenjie ;
Guo, Qian ;
Wang, Xi ;
Zhang, Liming ;
Gao, Xiaoya ;
Luo, Yongming .
SEPARATION AND PURIFICATION TECHNOLOGY, 2021, 276
[15]   Sonocatalytic performance of magnetically separable CuS/CoFe2O4 nanohybrid for efficient degradation of organic dyes [J].
Siadatnasab, Firouzeh ;
Farhadi, Saeed ;
Khataee, Alireza .
ULTRASONICS SONOCHEMISTRY, 2018, 44 :359-367
[16]   The Pseudocapacitive Nature of CoFe2O4 Thin Films [J].
Sagu, Jagdeep S. ;
Wijayantha, K. G. U. ;
Tahir, Asif A. .
ELECTROCHIMICA ACTA, 2017, 246 :870-878
[17]   Spectroscopic investigation on tetrahedral Co2+ in thin-film CoFe2O4 [J].
Kwang Joo Kim ;
Jongho Park .
Journal of Sol-Gel Science and Technology, 2019, 92 :40-44
[18]   Comparison XRD pattern of CoFe2O4 thin films and nanoparticles [J].
Fitriyanti, E. ;
Utari ;
Purnama, B. .
INTERNATIONAL CONFERENCE ON SCIENCE AND APPLIED SCIENCE 2017, 2017, 909
[19]   Spectroscopic investigation on tetrahedral Co2+ in thin-film CoFe2O4 [J].
Kim, Kwang Joo ;
Park, Jongho .
JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY, 2019, 92 (01) :40-44
[20]   Heterostructure CoFe2O4/kaolinite composite for efficient degradation of tetracycline hydrochloride through synergetic photo-Fenton reaction [J].
Li, Jingmai ;
Li, Shangying ;
Cao, Zhou ;
Zhao, Yunpu ;
Wang, Qizhao ;
Cheng, Hongfei .
APPLIED CLAY SCIENCE, 2023, 244