References

  1. T.A. Makhetha, R.M. Moutloali, Antifouling properties of Cu(tpa)@GO/PES composite membranes and selective dye rejection, J. Membr. Sci., 554 (2018) 195–210.
  2. J. Guo, A. Sotto, A. Martín, J. Kim, Preparation and characterization of polyethersulfone mixed matrix membranes embedded with Ti or Zr incorporated SBA-15 materials, J. Ind. Eng. Chem., 45 (2017) 257–265.
  3. H. Xu, M. Ding, S. Liu, Y. Li, Z. Shen, K. Wang, Preparation and characterization of novel polysulphone hybrid ultrafiltration membranes blended with N-doped GO/TiO2 nanocomposites, J. Polym., 117 (2017) 198–207.
  4. M. Jonoobi, A. Ashori, V. Siracusa, Characterization and properties of polyethersulfone/modified cellulose nanocrystals nanocomposite membranes, J. Polym. Test., 76 (2019) 333–339.
  5. Y. Hanafi, P. Loulergue, S. Ababou-Girard, C. Meriadec, M. Rabiller-Baudry, K. Baddari, A. Szymczyk, Electrokinetic analysis of PES/PVP membranes aged by sodium hypochlorite solutions at different pH, J. Membr. Sci., 501 (2016) 24–32.
  6. B. Van der Bruggen, Chemical modification of polyethersulfone nanofiltration membranes: a review, Appl. Polym. Sci., 114 (2009) 630–642.
  7. J.H. Haveri, Z.V.P. Murthy, A comprehensive review on antifouling nanocomposite membranes for pressure driven membrane separation processes, Desalination, 379 (2016) 137–154.
  8. S. Daer, J. Kharraz, A. Giwa, S.W. Hasan, Recent applications of nanomaterials in water desalination: a critical review and future opportunities, Desalination, 367 (2015) 37–48.
  9. Y. Manawi, V. Kochkodan, M.A. Hussein, M.A. Khaleel, M. Khraisheh, N. Hilal, Can carbon-based nanomaterials revolutionize membrane fabrication for water treatment and desalination, Desalination, 391 (2016) 69–88.
  10. X. Li, Y. Liu, J. Wang, J. Gascon, J. Li, B.V. Der Bruggen, Metalorganic frameworks based membranes for liquid separation, Chem. Soc. Rev., 46 (2017) 7124–7144.
  11. M. Pendergast, E.M.V. Hoek, A review of water treatment membrane nanotechnologies, J. Energy Environ. Sci., (2011) 1946–1971.
  12. Y. Zhang, L. Shan, Z. Tu, Preparation and characterization of novel Ce-doped non-stoechiometric nanosilica/polysulfone composite membranes, Sep. Purif. Technol., 63 (2008) 207–212.
  13. Y. Zhang, F. Liu, Y. Lu, L. Zhao, L. Song, Investigation of phosphorylated TiO2–SiO2 particles/polysulfone composite membrane for wastewater treatment, Desalination, 324 (2013) 118–126.
  14. A.L. Ahmad, A.A. Abdulkarim, Z.M.H. Mohd Shafie, B.S. Oi, Fouling evaluation of PES/ZnO mixed matrix hollow fiber membrane, Desalination, 403 (2017) 53–63.
  15. B.A. Sava, T. Vişan, Raman and FTIR studies of some solgel based glasses in the ZnO-TiO2-SiO2 system, J. Sci. Bull. B, 69 (2007) 1454–2331.
  16. R. Ueberbacher, E. Haimer, R. Hahn, A. Jungbauer, Hydrophobic interaction chromatography of proteins: quantitative assessment of conformational changes, J. Chromatogr. A, 1198–1199 (2008) 154–163.
  17. J. Belmejdoub, M. Rabiller-Baudry, D. Delaunay, G. Gésan Guiziou, Structural modifications of globular proteins in an ultrafiltration loop as evidenced by intrinsic fluorescence and reverse-phase liquid chromatography, Sep. Purif. Technol., 96 (2012) 274–288.
  18. A. Sedaghat, E. Taheri-Nassaj, G.D. Soraru, T. Ebadzadeh, A comparative study of microstructural development in the sol– gel derived alumina–mullite nanocomposites using colloidal silica and tetraethyl orthosilicate, J. Sol-Gel Sci. Technol., 58 (2011) 689–697.
  19. M. Schraml, T. Marth, K.L. Walther, A. Wokaun, Porous silica gels and TiO2/SiO2 mixed oxides prepared via the sol-gel process: characterization by spectroscopic techniques, J. Non-Cryst. Solids, 143 (1992) 93–111.
  20. M. Muzafa Jumidali, M.R. Hashim, K. Al-Heuseen, Analysis of the properties of germanium/zinc silicate film growth through a simple thermal evaporation technique for hydrogen gas sensing and deep UV photodetector application, Mater. Sci. Semicond. Process., 16 (2013) 1360–1364.
  21. J. Cho, M.S. Joshi, C.T. Sun, Effect of inclusion size on mechanical properties of polymeric composites with micro and nanoparticles, Compos. Sci. Technol., 66 (2006) 1941–1952.
  22. X. Cao, J. Ma, X. Shi, Z. Ren, Effect of TiO2 nanoparticle size on the performance of PVDF membrane, Appl. Surf. Sci., 253 (2006) 2003–2010.
  23. V. Vatanpour, S. Siavash Madaeni, A.R. Khataee, E. Salehi, S. Zinadini, H.A. Monfared, TiO2 embedded mixed matrix PES nanocomposite membranes: influence of different sizes and types of nanoparticles on antifouling and performance, Desalination, 292 (2012) 19–29.
  24. L. Jinlong, Z. Deshuai, S. Guozhe, Z. Chunming, Z. Qigang, J. Lihua, Nanocomposite of Cu-TiO2-SiO2 with high photoactive performance for degradation of Rhodamine B Dye in aqueous wastewater, Nanosci. Nanotechnol., 12 (2012) 6265–6270.
  25. H. Rajabi, N. Ghaemi, S. Madaeni, P. Daraei, B. Astinchap, S. Zinadini, S.H. Razavizadeh, Nano-ZnO embedded mixed matrix polyethersulfone (PES) membrane: Influence of nanofiller shape on characterization and fouling resistance, Appl. Surf. Sci., 349 (2015) 66–77.
  26. G. Calleja, D.P. Serrano, R. Sanz, P. Pizarro, A. Garci, Study on the synthesis of high-surface-area mesoporous TiO2 in the presence of nonionic surfactants, Ind. Eng. Chem. Res., 43 (2004) 2485–2492.
  27. S. Balta, A. Sotto, P. Luis, L. Benea, B. Van der Bruggen, J. Kim, A new outlook on membrane enhancement with nanoparticles: the alternative of ZnO, J. Membr. Sci., 389 (2012) 155–161.
  28. Y.H. Teow, A.L. Ahmad, J.K. Lim, B.S. Ooi, Preparation and characterization of PVDF/TiO2 mixed matrix membrane via in situ colloidal precipitation method, Desalination, 295 (2012) 61–69.
  29. K.P. Kuo, M. Cheryan, Ultrafiltration of acid whey in a spiralwound unit: effect of operating parameters on membrane fouling, J. Food Sci., 48 (1983) 1113–1118.