References
- J.E. Dohany, Fluorine‐Containing Polymers, Poly(Vinylidene
Fluoride), Kirk-Othmer Encyclopedia of Chemical Technology,
John Wiley & Sons, New York, 2000.
- K. Oshima, T. Evans-Strickfaden, A. Highsmith, E. Ades, The
use of a microporous polyvinylidene fluoride (PVDF) membrane
filter to separate contaminating viral particles from biologically
important proteins, Biologicals, 24 (1996) 137–145.
- S.S. Madaeni, M.K. Yeganeh, Microfiltration of emulsified oil
wastewater, J. Porous Mater., 10 (2003) 131–138.
- S.R. Chae, H. Yamamura, K. Ikeda, Y. Watanabe, Comparison
of fouling characteristics of two different poly-vinylidene fluoride
microfiltration membranes in a pilot-scale drinking water
treatment system using pre-coagulation/sedimentation, sand
filtration, and chlorination, Water Res., 42 (2008) 2029–2042.
- D. Wang, W. Teo, K. Li, Selective removal of trace H2S from gas
streams containing CO2 using hollow fibre membrane modules/
contractors, Sep. Purif. Technol., 35 (2004) 125–131.
- M. Mulder, Basic Principles of Membrane Technology, Springer,
Netherlands, 1996.
- M. Yeow, Y. Liu, K. Li, Morphological study of poly(vinylidene
fluoride) asymmetric membranes: effects of the solvent, additive,
and dope temperature, J. Appl. Polym. Sci., 92 (2004)
1782–1789.
- S. Munari, A. Bottino, G. Capannelli, Casting and performance
of polyvinylidene fluoride based membranes, J. Membr. Sci., 16
(1983) 181–193.
- T. Uragami, Y. Naito, M. Sugihara, Studies on synthesis and
permeability of special polymer membranes, Polym. Bull., 4
(1981) 617–622.
- A. Bottino, G. Camera-Roda, G. Capannelli, S. Munari, The formation
of microporous polyvinylidene difluoride membranes
by phase separation, J. Membr. Sci., 57 (1991) 1–20.
- Q. Li, Z.L. Xu, L.Y. Yu, Effects of mixed solvents and PVDF
types on performances of PVDF microporous membranes, J.
Appl. Polym. Sci., 115 (2010) 2277–2287.
- L.P. Cheng, Effect of temperature on the formation of microporous
PVDF membranes by precipitation from 1-octanol/DMF/
PVDF and water/DMF/PVDF systems, Macromolecules, 32
(1999) 6668–6674.
- X. Wang, L. Zhang, D. Sun, Q. An, H. Chen, Formation mechanism
and crystallization of poly(vinylidene fluoride) membrane
via immersion precipitation method, Desalination, 236
(2009) 170–178.
- F. Liu, N.A. Hashim, Y. Liu, M.R. Moghareh Abed, K. Li,
Progress in the production and modification of PVDF membranes,
J. Membr. Sci., 375 (2011) 1–27.
- G.D. Kang, Y.M. Cao, Application and modification of poly(vinylidene
fluoride) (PVDF) membranes, J. Membr. Sci., 463
(2014) 145–165.
- A. Rahimpour, S.S. Madaeni, S. Zereshki, Y. Mansourpanah,
Preparation and characterization of modified nano-porous
PVDF membrane with high antifouling property using UV
photo-grafting, Appl. Surf. Sci., 255 (2009) 7455–7461.
- J. Chen, Y.C. Nao, J.S. Park, Grafting polymerization of acrylic
acid onto preirradiated polypropylene fabric, Radiat. Phys.
Chem., 52 (1998) 201–206.
- T.R. Dargaville, G.A. George, D.J.T. Hill, A.K. Whittaker, High
energy radiation grafting of fluoropolymers, Prog. Polym. Sci.,
28 (2003) 1355–1376.
- A. Bozzi, A. Chapiro, Synthesis of perm-selective membranes
by grafting acrylic acid into air-irradiated Teflon-
FEP films, Int. J. Radiat. Appl. Instrum. Part C, 32 (1988)
193–196.
- F. Liu, B.K. Zhu, Y.Y. Xu, Improving the hydrophilicity of
poly(vinylidene fluoride) porous membranes by electron beam
initiated surface grafting of AA/SSS binary monomers, Appl.
Surf. Sci., 253 (2006) 2096–2101.
- E. Salimi, A. Ghaee, A.F. Ismail, Performance and antifouling
enhancement of polyethersulfone hollow fiber membranes
incorporated with highly hydrophilic hydroxyapatite nanoparticles,
RSC Adv., 6 (2016) 44480–44488.
- A. Ghaee, M. Shariaty-Niassar, J. Barzin, T. Matsuura, Effects
of chitosan membrane morphology on copper ion adsorption,
Chem. Eng. J., 165 (2010) 46–55.
- J. Hirschinger, D. Schaefer, H.W. Spiess, A.J. Lovinger, Chain
dynamics in the crystalline α-phase of poly(vinylidene fluoride)
by two-dimensional exchange deuteron NMR, Macromolecules,
24 (1991) 2428–2433.
- W.M. Haynes, CRC Handbook of Chemistry and Physics, CRC
Press, Boca Raton, 2014.
- I.M. Wienk, R. Boom, M. Beerlage, A. Bulte, C. Smolders, H.
Strathmann, Recent advances in the formation of phase inversion
membranes made from amorphous or semi-crystalline
polymers, J. Membr. Sci., 113 (1996) 361–371.
- S.J. You, G.U. Semblante, S.C. Lu, R.A. Damodar, T.C. Wei,
Evaluation of the antifouling and photocatalytic properties of
poly(vinylidene fluoride) plasma-grafted poly(acrylic acid)
membrane with self-assembled TiO2, J. Hazard. Mater., 237–238
(2012) 10–19.
- M.M. Tao, F. Liu, B.R. Ma, L.X. Xue, Effect of solvent power
on PVDF membrane polymorphism during phase inversion,
Desalination, 316 (2013) 137–145.
- L. Ying, P. Wang, E.T. Kang, K.G. Ne, Synthesis and characterization
of poly(acrylic acid)-graft-poly(vinylidene fluoride)
copolymers and pH-sensitive membranes, Macromolecules, 35
(2002) 673–679.
- S. Tohidi, A. Ghaee, J. Barzin, Preparation and characterization
of poly(lactic-co-glycolic acid)/chitosan electrospun membrane
containing amoxicillin-loaded halloysite nanoclay, Polym. Adv.
Technol., 27 (2016) 1020–1028.