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Information Journal Paper

Title

Synthesis and Characterization of rGO-TiO2-Fe3O4(GTF) Magnetic Photocatalyst

Pages

  89-96

Abstract

 In this study, iron-oxide (magnetite) synthesized by co-precipitation method and binary TiO2-Fe3O4 and ternary rGO-TiO2-Fe3O4 Nanocomposites (called GTF) prepared by hydrothermal method. Crystal structure and bonds, studied by X-ray diffraction (XRD) and FTIR analysis, respectively. The morphology of samples was studied by SEM. The average size of nanoparticles estimated ~12. 3 nm and saturation magnetization of Nanocomposites obtained by VSM, was 40. 26 emu/g. The Photocatalytic Activity of synthesized Nanocomposites determined by degradation of methyl orange under UV light irradiation. The ternary Nanocomposites showed ~98. 7 % degradation of methyl orange which has a remarkable improvement compared to TiO2-Fe3O4 binary Nanocomposites with 84 % degradation.

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  • Cite

    APA: Copy

    Morovatnejad, N., Hekmatara, H., & Seyedyazdi, J.. (2021). Synthesis and Characterization of rGO-TiO2-Fe3O4(GTF) Magnetic Photocatalyst. OPTOELECTRONIC, 3(2 (9) ), 89-96. SID. https://sid.ir/paper/1040638/en

    Vancouver: Copy

    Morovatnejad N., Hekmatara H., Seyedyazdi J.. Synthesis and Characterization of rGO-TiO2-Fe3O4(GTF) Magnetic Photocatalyst. OPTOELECTRONIC[Internet]. 2021;3(2 (9) ):89-96. Available from: https://sid.ir/paper/1040638/en

    IEEE: Copy

    N. Morovatnejad, H. Hekmatara, and J. Seyedyazdi, “Synthesis and Characterization of rGO-TiO2-Fe3O4(GTF) Magnetic Photocatalyst,” OPTOELECTRONIC, vol. 3, no. 2 (9) , pp. 89–96, 2021, [Online]. Available: https://sid.ir/paper/1040638/en

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