Identifying Phase‐Dependent Electrochemical Stripping Performance of FeOOH Nanorod: Evidence from Kinetic Simulation and Analyte–Material Interactions

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Yi‐Xiang Li ◽  
Min Jiang ◽  
Pei‐Hua Li ◽  
Shi‐Hua Chen ◽  
...  
2000 ◽  
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Christine M. L. Curran ◽  
Dennis J. Stuehr

2005 ◽  
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Xin Fu ◽  
Ke Chen ◽  
Guo-Li Shen ◽  
Ru-Qin Yu

2018 ◽  
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pp. 819-849 ◽  
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Debojyoti Ghosh ◽  
Mikhail A. Dorf ◽  
Milo R. Dorr ◽  
Jeffrey A. F. Hittinger

1984 ◽  
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S. G. Robinson ◽  
Michael. Whitfield

2015 ◽  
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Y. Zhang ◽  
W.Q. Chen ◽  
L. Chen ◽  
Q. Z. Yan ◽  
Z. Yao

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Vol 2016 ◽  
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Zhuanghong Mo ◽  
Qin Guo ◽  
Shuiqing Quan ◽  
...  

The graphene (GR) was prepared by an improved electrochemical stripping method using a high-purity graphite rod as raw material and high temperature heat reduction in hydrogen atmosphere, and the graphene/TiO2(GR/TiO2) composite nanomaterials were manufactured by the method of sol-gel and high temperature crystallization in hydrogen atmosphere using butyl titanate and electrolysis graphene as precursors. The physical and chemical properties of the composites had been characterized by using X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), UV-Vis spectrophotometer (UV-Vis), scanning electron microscopy (SEM), Transmission Electron Microscope (TEM),  and specific surface area (SSA) by BET method. The photocatalytic properties of GR/TiO2composites nanomaterials in anoxic water were studied by using 2,4-dichlorophenoxyacetic acid (2,4-D) as probe. The results showed that graphite was well intercalated and peeled by a facile electrolysis method in different electric field environment; a well dispersed and rings structure of graphene was prepared by coupling ultrasound-assisted changing voltage electrochemical stripping technology. The as-prepared GR/TiO2composites had good performance for the photocatalytic degradation of 2,4-D in anoxic water; the chlorines were removed from benzene ring; the middle products of dichlorophenol, chlorophenol, phloroglucinol, and so forth were produced from the photocatalytic redox reaction of 2,4-D in anoxic water; parts of 2,4-D were decomposed completely, and CO2and H2O were produced.


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