Fabrication of a novel Ti3C2-modified Sb-SnO2 porous electrode for electrochemical oxidation of organic pollutants

被引:5
|
作者
Man, Shuaishuai [1 ]
Zhou, Shanbin [1 ]
Yin, Zehao [1 ]
Zhang, Man [2 ]
Sun, Qing [1 ]
Yang, Haifeng [1 ]
Xu, Ke [3 ]
Bao, Hebin [1 ,4 ]
Xu, Lei [1 ]
Yang, Wenjing [1 ]
Mo, Zhihong [1 ]
Li, Xueming [1 ]
机构
[1] Chongqing Univ, Coll Chem & Chem Engn, Chongqing 401331, Peoples R China
[2] China Univ Min & Technol, Sch Chem Engn & Technol, Xuzhou 221116, Peoples R China
[3] Chinese Acad Sci, Shenzhen Inst Adv Technol, Multiscale Crystal Mat Res Ctr, Shenzhen 518055, Peoples R China
[4] Army Logist Univ PLA, Fundamental Studies Dept, Chongqing 401311, Peoples R China
关键词
MXene; Sb-SnO2; Wastewater treatment; Electrochemical oxidation; Porous; METHYLENE-BLUE; DOPED SNO2; DEGRADATION; COMPOSITE; MXENE; ANODE;
D O I
10.1016/j.seppur.2022.122601
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Sb-SnO2 is an appealing electrode for degrading organic pollutants in wastewater treatment, albeit further modifications are needed for its inefficient electrochemical oxidation capacity. In this work, we prepared Ti3C2 modified Sb-SnO(2 )electrode by electrodeposition technology. High-conductive MXene matrix regulated the Sb-Sn alloy nucleation process to decrease its domain size during deposition and generated pores during the annealing process. When introducing 20 mg MXene into the electrolyte, the obtained Sb-SnO2 electrode (Ti3C2-20) presented a larger oxygen evolution over-potential (2.32 V vsSCE), increased amount of active sites, and enlarged electrochemical specific surface area (similar to 4.4-fold) than the unmodified electrode, resulting in a promoted center dot OH generation ability (similar to 7.4 times). Methylene blue (MB), methyl orange (MO), norfloxacin (NOR), and P-phenylenediamine (PPD) were effectively degraded by the Ti3C2-20 anode with economic energy consumption. Moreover, the Ti3C2-20 electrode also featured a longer lifetime, almost fivefold, than the unmodified Sb-SnO2 electrode due to its larger loading amount and decreased charge transfer resistance. Consequently, this work offers a new perspective for designing efficient and stable porous electrodes to address water pollution issues.
引用
收藏
页数:13
相关论文
共 50 条
  • [21] Application of response surface methodology for electrochemical oxidation of the CI Reactive Orange 7 using flow reactor with Ti/Sb-SnO2 anode
    Parsa, Jalal Basiri
    Bahiraei, Mansoureh
    Chianeh, Farideh Nabizadeh
    DESALINATION AND WATER TREATMENT, 2016, 57 (42) : 20027 - 20036
  • [22] Anodic oxidation of organic pollutants on a Ti/SnO2-Sb2O4 anode
    Ciriaco, L.
    Santos, D.
    Pacheco, M. J.
    Lopes, A.
    JOURNAL OF APPLIED ELECTROCHEMISTRY, 2011, 41 (05) : 577 - 587
  • [23] Fabrication of novel SnO2-Sb/carbon aerogel electrode for ultrasonic electrochemical oxidation of perfluorooctanoate with high catalytic efficiency
    Zhao, Hongying
    Gao, Junxia
    Zhao, Guohua
    Fan, Jiaqi
    Wang, Yanbin
    Wang, Yujing
    APPLIED CATALYSIS B-ENVIRONMENTAL, 2013, 136 : 278 - 286
  • [24] Influence of Nd-doping on the degradation performance of Ti/Sb-SnO2 electrode
    Song, Yan-Fang
    Liu, Jia-Man
    Ge, Fang
    Huang, Xin
    Zhang, Yi
    Ge, Hong-Hua
    Meng, Xin-Jing
    Zhao, Yu-Zeng
    JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2021, 9 (04):
  • [25] Preparation of an ultra-long-life porous bilayer Ti/Sb-SnO2 electrode modified by nano-TiC for degradation of phenol
    Bi, Qiang
    Sun, Yifei
    Yang, Bo
    Zhao, Yilin
    Zhang, Zekun
    Xue, Juanqin
    MATERIALS TODAY COMMUNICATIONS, 2023, 35
  • [26] Electrodeposition preparation of a cauliflower-like Sb-SnO2 electrode from DMSO solution for electrochemical dye decolorization
    Duan, Ying
    Chen, Ye
    Wen, Qing
    Duan, Tigang
    RSC ADVANCES, 2016, 6 (53): : 48043 - 48048
  • [27] Fabrication of a SnO2-Sb electrode with TiO2 nanotube array as the middle layer for efficient electrochemical oxidation of amaranth dye
    Chen, Daying
    Zhao, Lin
    Chen, Danning
    Hou, Pengfei
    Liu, Jiashu
    Wang, Chuanbin
    Aborisade, Moses Akintayo
    Yin, Meilin
    Yang, Yongkui
    CHEMOSPHERE, 2023, 325
  • [28] Anodic oxidation of organic pollutants on a Ti/SnO2–Sb2O4 anode
    L. Ciríaco
    D. Santos
    M. J. Pacheco
    A. Lopes
    Journal of Applied Electrochemistry, 2011, 41 : 577 - 587
  • [29] Enhanced electrochemical oxidation of perfluorooctanoic acid on Ti/SnO2-Sb electrode by surface morphology regulation
    Hou, Kaiqiang
    Zhu, Genwang
    Feng, Yujie
    Liu, Yanming
    Quan, Xie
    CHINESE CHEMICAL LETTERS, 2024, 35 (03)
  • [30] Modeling and optimizing of electrochemical oxidation of CI Reactive Orange 7 on the Ti/Sb-SnO2 as anode via response surface methodology
    Parsa, J. Basiri
    Merati, Z.
    Abbasi, M.
    JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2013, 19 (04) : 1350 - 1355