References
- C. Dizman, M.A. Tasdelen, Y. Yagci, Recent advances in the
preparation of functionalized polysulfones, Polym. Int.,
62 (2013) 991–1007.
- J.B. Rose, Preparation and properties of poly(arylene ether
sulphones), Polymer, 15 (1974) 456–465.
- B. Van der Bruggen, Chemical modification of polyethersulfone
nanofiltration membranes: a review, J. Appl. Polym. Sci.,
114 (2009) 630–642.
- C. Zhao, X. Liu, M. Nomizu, N. Nishi, Blood compatible aspects
of DNA-modified polysulfone
membrane-protein adsorption
and platelet adhesion, Biomaterials, 24 (2003) 3747–3755.
- J. Wang, Y. Xu, L. Zhu, J. Li, B. Zhu, Amphiphilic ABA copolymers
used for surface modification of polysulfone membranes, Part
1: Molecular design, synthesis, and characterization, Polymer,
49 (2008) 3256–3264.
- D.S. Wavhal, E.R. Fisher, Modification of polysulfone ultrafiltration
membranes by CO2 plasma treatment, Desalination,
172 (2005) 189–205.
- M. Bryjak, I. Gancarz, G. Poźniak, W. Tylus, Modification of
polysulfone membranes 4. Ammonia plasma treatment, Eur.
Polym. J., 38 (2002) 717–726.
- M. Amini, M. Homayoonfal, M. Arami, A. Akbari, Modification
and characterization of prepared polysulfone ultrafiltration
membranes via photografted polymerization: effect of different
additives, Desal. Water Treat.,
9 (2009) 43–48.
- M.C. Sin, S.H. Chen, Y. Chang, Hemocompatibility of zwitterionic
interfaces and membranes, Polym. J., 46 (2014) 436–443.
- B. Mrabet, M.N. Nguyen, A. Majbri, S. Mahouche, M. Turmine,
A. Bakhrouf, M.M. Chehimi, Anti-fouling
poly(2-hydoxyethyl
methacrylate) surface coatings with specific bacteria recognition
capabilities, Surf. Sci., 603 (2009) 2422–2429.
- C. Yoshikawa, A. Goto, Y. Tsujii, T. Fukuda, T. Kimura,
K. Yamamoto, A. Kishida, Protein repellency of
well-defined,
concentrated poly(2-hydroxyethyl methacrylate) brushes by
the size-exclusion effect, Macromolecules, 39 (2007) 2284–2290.
- E. Ostuni, R.G. Chapman, R.E. Holmlin, A. Shuichi Takayama,
G.M. Whitesides, A survey of structure−property relationships
of surfaces that resist the adsorption of protein, Langmuir,
17 (2001) 5605–5620.
- M. Shen, L. Martinson, M.S. Wagner, D.G. Castner, B.D. Ratner,
T.A. Horbett, PEO-like plasma polymerized tetraglyme surface
interactions with leukocytes and proteins: in vitro and in vivo
studies, J. Biomater. Sci., Polym. Ed., 13 (2002) 367–390.
- Y.Y. Luk, A. Mihoko Kato, M. Mrksich, Self-assembled
monolayers of alkanethiolates presenting mannitol groups
are inert to protein adsorption and cell attachment, Langmuir,
16 (2000) 9604–9608.
- Z. Zhang, S. Chen, S. Jiang, Dual-functional biomimetic materials:
nonfouling poly(carboxybetaine) with active functional groups
for protein immobilization, Biomacromolecules, 7 (2006)
3311–3315.
- Z. Zhang, H. Vaisocherová, G. Cheng, W. Yang, H. Xue, S. Jiang,
Nonfouling behavior of
polycarboxybetaine-grafted surfaces:
structural and environmental effects, Biomacromolecules,
9 (2008) 2686–2692.
- Q. Li, B. Zhou, Q.Y. Bi, X.L. Wang, Surface modification of
PVDF membranes with sulfobetaine polymers for a stably antiprotein -
fouling performance, J. Appl. Polym. Sci., 125 (2012)
4015–4027.
- S. Jiang, Z. Cao, Ultralow-fouling, functionalizable, and
hydrolyzable zwitterionic materials and their derivatives for
biological applications, Adv. Mater., 22 (2010) 920–932.
- Q. Liu, W. Li, H. Wang, L. Liu, A facile method of using
sulfobetaine-containing copolymers for biofouling resistance,
J. Appl. Polym. Sci., 131 (2014) 9432–9440.
- Z. Zhang, S. Chen, A. Yung Chang, S. Jiang, Surface grafted
sulfobetaine polymers via atom transfer radical polymerization
as superlow fouling coatings, J. Phys. Chem. B, 110 (2006)
10799–10804.
- Y. Chang, W.J. Chang, Y.J. Shih, T.C. Wei, G.H. Hsiue,
Zwitterionic sulfobetaine-grafted poly(vinylidene fluoride)
membrane with highly effective blood compatibility via
atmospheric plasma-induced surface copolymerization, ACS
Appl. Mater. Interface, 3 (2011) 1228–1237.
- Y.F. Yang, Y. Li, Q.L. Li, L.S. Wan, Z.K. Xu, Surface
hydrophilization of microporous polypropylene membrane
by grafting zwitterionic polymer for anti-biofouling, J. Membr.
Sci., 362 (2010) 255–264.
- W.W. Yue, H.J. Li, T. Xiang, H. Qin, S.D. Sun, C.S. Zhao,
Grafting of zwitterion from polysulfone membrane via surfaceinitiated
ATRP with enhanced antifouling property and
biocompatibility, J. Membr. Sci., 446 (2013) 79–91.
- E.T. Kang, K.L. Tan, K. Kato, Y. Uyama, Y. Ikada, Surface
modification and functionalization of polytetrafluoroethylene
films, Macromolecules, 29 (1996) 6872–6879.
- S.P. Roux, E.P. Jacobs, A.J.V. Reenen, C. Morkel, M. Meincken,
Hydrophilisation of polysulphone ultrafiltration membranes
by incorporation of branched PEO-block-PSU copolymers,
J. Membr. Sci., 276 (2006) 8–15.
- Z. Yi, L.P. Zhu, Y.F. Zhao, B.K. Zhu, Y.Y. Xu, An extending of
candidate for the hydrophilic modification of polysulfone
membranes from the compatibility consideration: the
polyethersulfone-based amphiphilic copolymer as an example,
J. Membr. Sci., 390–391 (2012) 48–57.
- Z. Shao, A. Sannigrahi, P. Jannasch, Poly(tetrafluorostyrenephosphonic
acid)–polysulfone block copolymers and
membranes, J. Polym. Sci., Part A: Polym. Chem., 51 (2013)
4657–4666.
- J.H. Li, M.Z. Li, J. Miao, J.B. Wang, X.S. Shao, Q.Q. Zhang,
Improved surface property of PVDF membrane with
amphiphilic zwitterionic copolymer as membrane additive,
Appl. Surf. Sci., 258 (2012) 6398–6405.
- B.H. Wu, L.W. Zhu, Y. Ou, W. Tang, L.S. Wan, Z.K. Xu, Systematic
investigation on the formation of honeycomb-patterned porous
films from amphiphilic block copolymers, J. Phys. Chem. C,
119 (2015) 1971–1979.
- L. Buzoglu, E. Maltas, M. Ersoz, S. Yildiz, Synthesis and
characterization of PS-b-PGMA diblock copolymer and its
interaction with blood proteins and donepezil, React. Funct.
Polym., 82 (2014) 25–32.
- Z. Dong, J. Mao, D. Wang, M. Yang, W. Wang, S. Bo, X. Ji,
Tunable dual-thermoresponsive phase behavior of zwitterionic
polysulfobetaine copolymers containing poly(N,N-dimethylaminoethyl
methacrylate)-grafted silica nanoparticles
in aqueous solution, Macromol. Chem. Phys., 215 (2014)
111–120.
- S. Zhai, Y. Ma, Y. Chen, D. Li, J. Cao, Y. Liu, M. Cai, X. Xie,
Y. Chen, X. Luo, Synthesis of an amphiphilic block copolymer
containing zwitterionic sulfobetaine as a novel pH-sensitive
drug carrier, Polym. Chem., 5 (2014) 1285–1297.
- C.H. Shen, Surface modification of titanium substrate with a
novel covalently-bound copolymer thin film for improving its
platelet compatibility, J. Mater. Sci.: Mater. Med., 26 (2015) 1–13.
- Y.H. Zhao, K.H. Wee, R. Bai, Highly hydrophilic and low-protein
fouling polypropylene membrane prepared by surface
modification with sulfobetaine-based zwitterionic polymer
through a combined surface polymerization method, J. Membr.
Sci., 362 (2010) 326–333.
- J.Y. Park, M.H. Acar, A. Akthakul, W. Kuhlman, A.M. Mayes,
Polysulfone-graft-poly(ethylene glycol) graft copolymers for
surface modification of polysulfone membranes, Biomaterials,
27 (2006) 856–865.
- L. Liang, G. Yan, J. Wu, Modification of polysulfone membranes
via surface-initiated atom transfer radical polymerization
and their antifouling properties, J. Appl. Polym. Sci., 111 (2009)
1942–1946.
- A.W. Mohammad, C.Y. Ng, P.L. Ying, G.H. Ng, Ultrafiltration
in food processing industry: review on application, membrane
fouling, and fouling control, Food Bioprocess Technol., 5 (2012)
1143–1156.
- M.O. Nigam, B. Bansal, X.D. Chen, Fouling and cleaning of
whey protein concentrate fouled ultrafiltration membranes,
Desalination, 218 (2008) 313–322.
- S. Zhao, Z. Wang, X. Wei, B. Zhao, J. Wang, S. Yang,
S. Wang, Performance improvement of polysulfone
ultrafiltration membrane using well-dispersed polyaniline–poly(vinylpyrrolidone) nanocomposite as the additive, Ind.
Eng. Chem. Res., 51 (2012) 4661–4672.
- C. Xu, S. Gu, J. Huang, W. Xu, H. Xia, J. Du, H. Liu,
H. Yang, Y. Zhou, Z. Bai, Modification of polysulfones by click
chemistry: zwitterionic graft complex and their antiprotein
fouling property, J. Appl. Polym. Sci., 132 (2015), doi:10.1002/app.41327.