References

  1. T. Zhu, J.S. Chen, X.W. Lou, Highly efficient removal of organic dyes from waste water using hierarchical NiO spheres with high surface area, J. Phys. Chem. C, 116 (2012) 6873–6878.
  2. A. Nsabimana, S.A. Kitte, F. Wu, L. Qi, Z. Liu, M.N. Zafar, R. Luque, G. Xu, Multifunctional magnetic Fe3O4/nitrogendoped porous carbon nanocomposites for removal of dyes and sensing applications, Appl. Surf. Sci., 467–468 (2019) 89–97.
  3. T.H. Tu, P.T.N. Cam, L.V.T. Huy, M.T. Phong, H.M. Nam, N.H. Hieu, Synthesis and application of graphene oxide aerogel as an adsorbent for removal of dyes from water, Mater. Lett., 238 (2019) 134–137.
  4. K. Chen, T. Zhang, L. Huang, Y. Suo, D. Zhang, J. Sun, J. Wang, A facile and green synthesis of CDs-MoS2-Fe3O4 nanohybrid for recyclable and enhanced photocatalysis in dye degradation, Mater. Lett., 232 (2018) 167–170.
  5. Y. He, Z. Cheng, Y. Qin, B. Xu, L. Ning, L. Zhou, Facile synthesis and functionalization of hyperbranched polyglycerol capped magnetic Fe3O4 nanoparticles for efficient dye removal, Mater. Lett., 151 (2015) 100–103.
  6. H. Wu, G. Gao, X. Zhou, Y. Zhang, S. Guo, Control on the formation of Fe3O4 nanoparticles on chemically reduced graphene oxide surfaces, Cryst. Eng. Comm., 14 (2012) 499–504.
  7. H. El Ghandoor, H. Zidan, M. Khalil, M.I.M. Ismail, Synthesis and some physical properties of magnetite (Fe3O4) nanoparticles, Int. J. Electrochem. Sci., 7 (2012) 5734–5745.
  8. Y. Wang, X.-y. Liu, X. Xu, Y. Yang, L.-h. Huang, Z.-y. He, Y.-h. Xu, J.-j. Chen, Z.-s. Feng, Preparation and characterization of reduced graphene oxide/Fe3O4 nanocomposite by a facile in-situ deposition method for glucose biosensor applications, Mater. Res. Bull., 101 (2018) 340–346.
  9. A.B. Chimezie, R. Hajian, N.A. Yusof, P.M. Woi, N. Shams, Fabrication of reduced graphene oxide-magnetic nanocomposite (rGO-Fe3O4) as an electrochemical sensor for trace determination of As(III) in water resources, J. Electroanal. Chem., 796 (2017) 33–42.
  10. A.M. Idris, M.I. Shinger, S. Barkaoui, K. Khan, H. Idris Abdu, M.M. Edris, X. Lu, Fabrication of RGO-Fe3O4 hybrid functionalized with Ag3PO4 as photocatalyst for degradation of Rhodamime B under visible light irradiation, Mater. Res. Bull., 102 (2018) 100–107.
  11. S. Mahalingam, Y.-H. Ahn, Improved visible light photocatalytic activity of rGO–Fe3O4–NiO hybrid nanocomposites synthesized by in situ facile method for industrial wastewater treatment applications, New J. Chem., 42 (2018) 4372–4383.
  12. T. Peik-See, A. Pandikumar, L.H. Ngee, H.N. Ming, C.C. Hua, Magnetically separable reduced graphene oxide/iron oxide nanocomposite materials for environmental remediation, Catal. Sci. Technol., 4 (2014) 4396–4405.
  13. X. Jiang, L. Li, Y. Cui, F. Cui, New branch on old tree: Greensynthesized RGO/Fe3O4 composite as a photo-Fenton catalyst for rapid decomposition of methylene blue, Ceramics Int., 43 (2017) 14361–14368.
  14. C. Shang, G. Ji, W. Liu, X. Zhang, H. Lv, Y. Du, One-pot in situ molten salt synthesis of octahedral Fe3O4 for efficient microwave absorption application, RSC Adv., 5 (2015) 80450–80456.
  15. M.V. Reddy, C.T. Cherian, K. Ramanathan, K.C.W. Jie, T.Y.W. Daryl, T.Y. Hao, S. Adams, K.P. Loh, B.V.R. Chowdari, Molten synthesis of ZnO.Fe3O4 and Fe2O3 and its electrochemical performance, Electrochim. Acta, 118 (2014) 75–80.
  16. K. Huang, Y.H. Li, S. Lin, C. Liang, H. Wang, C.X. Ye, Y.J. Wang, R. Zhang, D.Y. Fan, H.J. Yang, Y.G. Wang, M. Lei, A facile route to reduced graphene oxide–zinc oxide nanorod composites with enhanced photocatalytic activity, Powder Technol., 257 (2014) 113–119.
  17. D. Zhao, Y. Zhou, Y. Deng, Y. Xiang, Y. Zhang, Z. Zhao, D. Zeng, A novel and reusable RGO/ZnO with nanosheets/microparticle composite photocatalysts for efficient pollutants degradation, Chem. Select, 3 (2018) 8740–8747.
  18. S. Liu, H. Sun, A. Suvorova, S. Wang, One-pot hydrothermal synthesis of ZnO-reduced graphene oxide composites using Zn powders for enhanced photocatalysis, Chem. Eng. J., 229 (2013) 533–539.
  19. Y. Sun, Y. He, B. Tang, Z. Wu, C. Tao, J. Ban, L. Jiang, X. Sun, Selective adsorption and decomposition of pollutants using RGO-TiO2 with optimized surface functional groups, RSC Adv., 8 (2018) 31996–32002.
  20. D. Maruthamani, D. Divakar, M. Kumaravel, Enhanced photocatalytic activity of TiO2 by reduced graphene oxide in mineralization of Rhodamine B dye, J. Ind. Eng. Chem., 30 (2015) 33–43.
  21. V. Loryuenyong, J. Charoensuk, R. Charupongtawitch, A. Usakulwattana, A. Buasri, Kinetics of photocatalytic degradation of Methylene Blue by TiO2-graphene nanocomposites, J. Nanosci. Nanotechnol., 16 (2016) 296–302.
  22. Y. Yang, L. Xu, H. Wang, W. Wang, L. Zhang, TiO2/graphene porous composite and its photocatalytic degradation of methylene blue, Mater. Design, 108 (2016) 632–639.
  23. X. Luan, M.T. Gutierrez Wing, Y. Wang, Enhanced photocatalytic activity of graphene oxide/titania nanosheets composites for methylene blue degradation, Mater. Sci. Semicond. Process., 30 (2015) 592–598.
  24. M.F. Alajmi, J. Ahmed, A. Hussain, T. Ahamad, N. Alhokbany, S. Amir, T. Ahmad, S.M. Alshehri, Green synthesis of Fe3O4 nanoparticles using aqueous extracts of Pandanus odoratissimus leaves for efficient bifunctional electro-catalytic activity, Appl. Nanosci., 8 (2018) 1427–1435.
  25. S.M. AlShehri, J. Ahmed, T. Ahamad, B.M. Almaswari, A. Khan, Efficient photodegradation of methylthioninium chloride dye in aqueous using barium tungstate nanoparticles, J. Nanopart. Res., 19 (2017) 289.
  26. S.M. AlShehri, J. Ahmed, A.M. Alzahrani, T. Ahamad, Synthesis, characterization, and enhanced photocatalytic properties of NiWO4 nanobricks, New J. Chem., 41 (2017) 8178–8186.
  27. T. Ahmad, R. Phul, P. Alam, I.H. Lone, M. Shahazad, J. Ahmed, T. Ahamad, S. Alshehri, Dielectric, optical and enhanced photocatalytic properties of CuCrO2 nanoparticles, RSC Adv., 7 (2017) 27549–27557.
  28. S. Yang, T. Zeng, Y. Li, J. Liu, Q. Chen, J. Zhou, Y. Ye, B. Tang, Preparation of graphene oxide decorated Fe3O4@SiO2 nanocomposites with superior adsorption capacity and SERS detection for organic dyes, J. Nanomater., 2015 (2015) 8.
  29. J. Ahmed, T. Ahamad, M. Ubaidullah, A.M. Al-Enizi, A.N. Alhabarah, N. Alhokbany, S.M. Alshehri, rGO supported NiWO4 nanocomposites for hydrogen evolution reactions, Mater. Lett., 240 (2019) 51–54.
  30. M. Naebe, J. Wang, A. Amini, H. Khayyam, N. Hameed, L.H. Li, Y. Chen, B. Fox, Mechanical property and structure of covalent functionalised graphene/epoxy nanocomposites, Sci. Rep., 4 (2014) 4375.
  31. L. Jinlong, F. Haibo, W. Xipeng, Q. Dong, J. Jianbo, L. Junhua, P. Sanjun, D. Miao, L. Youcai, Self-assembly of nano/ micro-structured Fe3O4 microspheres among 3D rGO/CNTs hierarchical networks with superior lithium storage performances, Nanotechnology, 25 (2014) 225401.
  32. P.K. Boruah, P. Borthakur, G. Darabdhara, C.K. Kamaja, I. Karbhal, M.V. Shelke, P. Phukan, D. Saikia, M.R. Das, Sunlight assisted degradation of dye molecules and reduction of toxic Cr(VI) in aqueous medium using magnetically recoverable Fe3O4/reduced graphene oxide nanocomposite, RSC Adv., 6 (2016) 11049–11063.