References

  1. L.M. Corneal, M.J. Baumann, S.J. Masten, S.H.R. Davies, V.V. Tarabara, S. Byun, Mn oxide coated catalytic membranes for hybrid ozonation-membrane filtration: Membrane microstructural characterization, J. Membr. Sci., 369 (2011) 182–187.
  2. C. Sun, X. Feng, Enhancing the performance of PVDF membranes by hydrophilic surface modification via amine treatment, Sep. Purif. Technol., 185 (2017) 94–102.
  3. X. Yang, Y. He, G.Y. Zeng, Y.Q. Zhan, Y. Pan, H. Shi, Q. Chen, Novel hydrophilic PVDF ultrafiltration membranes based on a ZrO2-multiwalled carbon nanotube hybrid for oil/water separation, J. Mater. Sci., 51 (2016) 8965–8976.
  4. Y. Subasi, B. Cicek, Recent advances in hydrophilic modification of PVDF ultrafiltration membranes – a review: part I, Membr. Technol., 2017 (2017) 7–12.
  5. G. Kang, Y. Cao, Application and modification of poly(vinylidene fluoride) (PVDF) membranes – A review, J. Membr. Sci., 463 (2014) 145–165.
  6. J.F. Kim, J.T. Jung, H.H. Wang, S.Y. Lee, T. Moore, A. Sanguineti, E. Drioli, Y.M. Lee, Microporous PVDF membranes via thermally induced phase separation (TIPS) and stretching methods, J. Membr. Sci., 509 (2016) 94–104.
  7. W.C. Chong, E. Mahmoudi, Y.T. Chung, M.M. Ba-Abbad, C.H. Koo, A.W. Mohammad, Polyvinylidene fluoride membranes with enhanced antibacterial and low fouling properties by incorporating ZnO/rGO composites, Desal. Water Treat., 96 (2017) 12–21.
  8. J. Ji, S. Zhou, C.Y. Lai, B. Wang, K. Li, PVDF/palygorskite composite ultrafiltration membranes with enhanced abrasion resistance and flux, J. Membr. Sci., 495 (2015) 91–100.
  9. A. Jafari, M.R.S. Kebria, A. Rahimpour, G. Bakeri, Graphene quantum dots modified polyvinylidenefluride (PVDF) nanofibrous membranes with enhanced performance for air gap membrane distillation, Chem. Eng. Process., 126 (2018) 222–231.
  10. A.L. Ahmad, U.R. Farooqui, N.A. Hamid, Effect of graphene oxide (GO) on poly(vinylidene fluoride-hexafluoropropylene) (PVDF-HFP) polymer electrolyte membrane, Polymer, 142 (2018) 330–336.
  11. X. Wu, B. Zhao, L. Wang, Z. Zhang, H. Zhang, X. Zhao, X. Guo, Hydrophobic PVDF/graphene hybrid membrane for CO2 absorption in membrane contactor, J. Membr. Sci., 520 (2016) 120–129.
  12. P.S. Goh, A.F. Ismail, A review on inorganic membranes for desalination and wastewater treatment, Desalination, 434 (2018) 60–80.
  13. M.H.D.A. Farahani, V. Vatanpour, A comprehensive study on the performance and antifouling enhancement of the PVDF mixed matrix membranes by embedding different nanoparticulates: Clay, functionalized carbon nanotube, SiO2 and TiO2, Sep. Purif. Technol., 197 (2018) 372–381.
  14. P. Anadão, L.F. Sato, R.R. Montes, H.S. De Santis, Polysulphone/montmorillonite nanocomposite membranes: Effect of clay addition and polysulphone molecular weight on the membrane properties, J. Membr. Sci., 455 (2014) 187–199.
  15. S.S. Ray, M. Okamoto, Polymer/layered silicate nanocomposites: a review from preparation to processing, Prog. Polym. Sci., 28 (2003) 1539–1641.
  16. M. Ghanbari, D. Emadzadeh, W.J. Lau, T. Matsuura, M. Davoody, A.F. Ismail, Super hydrophilic TiO2/HNT nanocomposites as a new approach for fabrication of high performance thin film nanocomposite membranes for FO application, Desalination, 371 (2015) 104–114.
  17. G. Zeng, Z. Ye, Y. He, X. Yang, J. Ma, H. Shi, Z. Feng, Application of dopamine-modified halloysite nanotubes/PVDF blend membranes for direct dyes removal from wastewater, Chem. Eng. J., 323 (2017) 572–583.
  18. Y. Ma, F. Shi, Z. Wang, M. Wu, J. Ma, C. Gao, Preparation and characterization of PSf/clay nanocomposite membranes with PEG 400 as a pore forming additive, Desalination, 286 (2012) 131–137.
  19. X.T. Hong, Y.M. Zhou, Z.L. Ye, H.F. Zhuang, W.P. Liu, K.S. Hui, Z. Zeng, X.H. Qiu, Enhanced hydrophilicity and antibacterial activity of PVDF ultrafiltration membrane using Ag3PO4/TiO2 nanocomposite against E. coli, Desal. Water Treat., 75 (2017) 26–33.
  20. V.K. Soni, T. Roy, S. Dhara, G. Choudhary, P.R. Sharma, R.K. Sharma, On the investigation of acid and surfactant modification of natural clay for photocatalytic water remediation, J. Mater. Sci., 53 (2018) 10095–10110.
  21. H. Lee, S.M. Dellatore, W.M. Miller, P.B. Messersmith, Mussel-inspired surface chemistry for multifunctional coatings, Science, 318 (2007) 426–430.
  22. J.H. Waite, Surface chemistry - Mussel power, Nature Mater., 7 (2008) 8–9.
  23. D.R. Dreyer, D.J. Miller, B.D. Freeman, D.R. Paul, C.W. Bielawski, Perspectives on poly(dopamine), Chem. Sci., 4 (2013) 3796–3802.
  24. L.P. Yang, S.L. Phua, J.K.H. Teo, C.L. Toh, S.K. Lau, J. Ma, X.H. Lu, A biomimetic approach to enhancing interfacial interactions: polydopamine-coated clay as reinforcement for epoxy resin, ACS Appl. Mater. Inter., 3 (2011) 3026–3032.
  25. S.L. Phua, L. Yang, C.L. Toh, S. Huang, Z. Tsakadze, S.K. Lau, Y.W. Mai, X.H. Lu, Reinforcement of polyether polyurethane with dopamine-modified clay: the role of interfacial hydrogen bonding, ACS Appl. Mater. Inter., 4 (2012) 4571–4578.
  26. S.L. Phua, L.P. Yang, C.L. Toh, G.Q. Ding, S.K. Lau, A. Dasari, X.H. Lu, Simultaneous enhancements of UV resistance and mechanical properties of polypropylene by incorporation of dopamine-modified clay, ACS Appl. Mater. Inter., 5 (2013) 1302–1309.
  27. L. Wang, L.J. Hu, S.B. Gao, D.T. Zhao, L.Q. Zhang, W.C. Wang, Bio-inspired polydopamine-coated clay and its thermo-oxidative stabilization mechanism for styrene butadiene rubber, RSC Adv., 5 (2015) 9314–9324.
  28. Y. Cai, J.X. Li, X.W. Zhang, Y.Z. Zhang, In-situ monitoring of polysulfone membrane formation via immersion precipitation using an ultrasonic through-transmission technique, Desal. Water Treat., 32 (2011) 214–225.
  29. Y. Xuan, G. Jiang, Y. Li, J. Wang, H. Geng, Inhibiting effect of dopamine adsorption and polymerization on hydrated swelling of montmorillonite, Colloids Surfaces A: Physicochem. Eng. Asp., 422 (2013) 50–60.
  30. J. Lu, Y. Gu, Y. Chen, X. Yan, Y. Guo, W. Lang, Ultrahigh permeability of graphene-based membranes by adjusting D-spacing with poly (ethylene imine) for the separation of dye wastewater, Sep. Purif. Technol., 210 (2019) 737–745.
  31. B. Fei, B. Qian, Z. Yang, R. Wang, W.C. Liu, C.L. Mak, J.H. Xin, Coating carbon nanotubes by spontaneous oxidative polymerization of dopamine, Carbon, 46 (2008) 1795–1797.
  32. S. Weng, D. Liang, H. Qiu, Z. Liu, Z. Lin, Z. Zheng, A. Liu, W. Chen, X. Lin, A unique turn-off fluorescent strategy for sensing dopamine based on formed polydopamine (pDA) using graphene quantum dots (GQDs) as fluorescent probe, Sensors Actuators B: Chem., 221 (2015) 7–14.
  33. A.M. Slavutsky, M.A. Bertuzzi, A phenomenological and thermodynamic study of the water permeation process in corn starch/MMT films, Carbohydr. Polym., 90 (2012) 551–557.
  34. M. Zhou, Q. Liu, S. Wu, Z. Gou, X. Wu, D. Xu, Starch/chitosan films reinforced with polydopamine modified MMT: Effects of dopamine concentration, Food Hydrocolloids, 61 (2016) 678– 684.
  35. A.K. Mishra, N.H. Kim, D. Jung, J.H. Lee, Enhanced mechanical properties and proton conductivity of Nafion–SPEEK–GO composite membranes for fuel cell applications, J. Membr. Sci., 458 (2014) 128–135.
  36. J. Li, X. Ni, D. Zhang, H. Zheng, J. Wang, Q. Zhang, Engineering a self-driven PVDF/PDA hybrid membranes based on membrane micro-reactor effect to achieve super-hydrophilicity, excellent antifouling properties and hemocompatibility, Appl. Surf. Sci., 444 (2018) 672–690.
  37. C. Zhao, J. Lv, X. Xu, G. Zhang, Y. Yang, F. Yang, Highly antifouling and antibacterial performance of poly(vinylidene fluoride) ultrafiltration membranes blending with copper oxide and graphene oxide nanofillers for effective wastewater treatment, J. Colloid Interface Sci., 505 (2017) 341–351.
  38. N. Meng, R.C.E. Priestley, Y. Zhang, H. Wang, X. Zhang, The effect of reduction degree of GO nanosheets on microstructure and performance of PVDF/GO hybrid membranes, J. Membr. Sci., 501 (2016) 169–178.
  39. C. Liu, L. Wu, C. Zhang, W. Chen, S. Luo, Surface hydrophilic modification of PVDF membranes by trace amounts of tannin and polyethyleneimine, Appl. Surf. Sci., 457 (2018) 695–704.
  40. S.A. McKelvey, W.J. Koros, Phase separation, vitrification, and the manifestation of macrovoids in polymeric asymmetric membranes, J. Membr. Sci., 112 (1996) 29–39.
  41. A. Qin, X. Li, X. Zhao, D. Liu, C. He, Preparation and characterization of nano-chitin whisker reinforced PVDF membrane with excellent antifouling property, J. Membr. Sci., 480 (2015) 1–10.
  42. Y. Cai, J. Li, Y. Guo, Z. Cui, Y. Zhang, In-situ monitoring of asymmetric poly(ethylene-co-vinyl alcohol) membrane formation via a phase inversion process by an ultrasonic through-transmission technique, Desalination, 283 (2011) 25–30.
  43. J. Lv, G. Zhang, H. Zhang, C. Zhao, F. Yang, Improvement of antifouling performances for modified PVDF ultrafiltration membrane with hydrophilic cellulose nanocrystal, Appl. Surf. Sci., 440 (2018) 1091–1100.
  44. H.Y. Liu, G.Q. Zhang, C.Q. Zhao, J.D. Liu, F.L. Yang, Hydraulic power and electric field combined antifouling effect of a novel conductive poly(aminoanthraquinone)/reduced graphene oxide nanohybrid blended PVDF ultrafiltration membrane, J. Mater. Chem. A, 3 (2015) 20277–20287.
  45. X. Chang, Z. Wang, S. Quan, Y. Xu, Z. Jiang, L. Shao, Exploring the synergetic effects of graphene oxide (GO) and polyvinylpyrrodione (PVP) on poly(vinylylidenefluoride) (PVDF) ultrafiltration membrane performance, Appl. Surf. Sci., 316 (2014) 537–548.
  46. W. Zhao, J. Huang, B. Fang, S. Nie, N. Yi, B. Su, H. Li, C. Zhao, Modification of polyethersulfone membrane by blending semi-interpenetrating network polymeric nanoparticles, J. Membr. Sci., 369 (2011) 258–266.
  47. C. Su, J. Chang, K. Tang, F. Gao, Y. Li, H. Cao, Novel three-dimensional superhydrophobic and strength-enhanced electrospun membranes for long-term membrane distillation, Sep. Purif. Technol., 178 (2017) 279–287.
  48. J.F. Li, Z.L. Xu, H. Yang, Microporous polyethersulfone membranes prepared under the combined precipitation conditions with non-solvent additives, Polym. Adv. Technol., 19 (2008) 251–257.
  49. D. Sun, M.-Q. Liu, J.-H. Guo, J.-Y. Zhang, B.-B. Li, D.-Y. Li, Preparation and characterization of PDMS-PVDF hydrophobic microporous membrane for membrane distillation, Desalination, 370 (2015) 63–71.
  50. R. Roshani, F. Ardeshiri, M. Peyravi, M. Jahanshahi, Highly permeable PVDF membrane with PS/ZnO nanocomposite incorporated for distillation process, RSC Adv., 8 (2018) 23499– 23515.
  51. X. Zhang, L. Shen, C.-Y. Guan, C.-X. Liu, W.-Z. Lang, Y. Wang, Construction of SiO2@MWNTs incorporated PVDF substrate for reducing internal concentration polarization in forward osmosis, J. Membr. Sci., 564 (2018) 328–341.
  52. G.Y. Zeng, Y. He, Y.Q. Zhan, L. Zhang, Y. Pan, C.L. Zhang, Z.X. Yu, Novel polyvinylidene fluoride nanofiltration membrane blended with functionalized halloysite nanotubes for dye and heavy metal ions removal, J. Hazard. Mater., 317 (2016) 60–72.
  53. M. Rezaei-DashtArzhandi, A.F. Ismail, M. Ghanbari, G. Bakeri, S.A. Hashemifard, T. Matsuura, A. Moslehyani, An investigation of temperature effects on the properties and CO2 absorption performance of porous PVDF/montmorillonite mixed matrix membranes, J. Nat. Gas Sci. Eng., 31 (2016) 515–524.
  54. C.Y. Lai, A. Groth, S. Gray, M. Duke, Enhanced abrasion resistant PVDF/nanoclay hollow fibre composite membranes for water treatment, J. Membr. Sci., 449 (2014) 146–157.
  55. M. Rezaei, A.F. Ismail, S.A. Hashemifard, G. Bakeri, T. Matsuura, Experimental study on the performance and long-term stability of PVDF/montmorillonite hollow fiber mixed matrix membranes for CO2 separation process, Int. J. Greenh. Gas Con., 26 (2014) 147–157.
  56. C.Y. Lai, A. Groth, S. Gray, M. Duke, Impact of casting conditions on PVDF/nanoclay nanocomposite membrane properties, Chem. Eng. J., 267 (2015) 73–85.