[1] Y.N. Yang, H.X. Zhang, P. Wang, Q.Z. Zheng, J. Li, The influence of nano-sized TiO2 fillers on the morphologies and properties of PSF UF membrane, J. Membr. Sci. 288(2007) 231-238. [2] K. Zodrow, L. Brunet, S. Mahendra, D. Li, A. Zhang, Q.L. Li, P.J.J. Alvarez, Polysulfone ultrafiltration membranes impregnated with silver nanoparticles show improved biofouling resistance and virus removal, Water Res. 43(2009) 715-723. [3] 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. [4] A.G. Fane, C.J.D. Fell, A. Suki, The effect of Ph and ionic environment on the ultrafiltration of protein solutions with retentive membranes, J. Membr. Sci. 16(1983) 195-210. [5] K.J. Kim, A.G. Fane, C.J.D. Fell, D.C. Joy, Fouling mechanisms of membranes during protein ultrafiltration, J. Membr. Sci. 68(1992) 79-91. [6] J.M. Sheldon, I.M. Reed, C.R. Hawes, The fine-structure of ultrafiltration membranes. 2. Protein fouled membranes, J. Membr. Sci. 62(1991) 87-102. [7] D. Rana, T. Matsuura, Surface modifications for antifouling membranes, Chem. Rev. 110(2010) 2448-2471. [8] A. Akthakul, R.F. Salinaro, A.M. Mayes, Antifouling polymer membranes with subnanometer size selectivity, Macromolecules 37(2004) 7663-7668. [9] M.S. Mauter, Y. Wang, K.C. Okemgbo, C.O. Osuji, E.P. Giannelis, M. Elimelech, Antifouling ultrafiltration membranes via post-fabrication grafting of biocidal nanomaterials, ACS Appl. Mater. Interfaces 3(2011) 2861-2868. [10] R.N. Zhang, Y.N. Liu, M.R. He, Y.L. Su, X.T. Zhao, M. Elimelech, Z.Y. Jiang, Antifouling membranes for sustainable water purification:Strategies and mechanisms, Chem. Soc. Rev. 45(2016) 5888-5924. [11] A. Lee, J.W. Elam, S.B. Darling, Membrane materials for water purification:Design, development, and application, Environ. Sci.:Water Res. Technol. 2(2016) 17-42. [12] X.L. Ma, Y.L. Su, Q. Sun, Y.Q. Wang, Z.Y. Jiang, Enhancing the antifouling property of polyethersulfone ultrafiltration membranes through surface adsorptioncrosslinking of poly(vinyl alcohol), J. Membr. Sci. 300(2007) 71-78. [13] Y. Liu, S.L. Zhang, G.B. Wang, The preparation of antifouling ultrafiltration membrane by surface grafting zwitterionic polymer onto poly(arylene ether sulfone) containing hydroxyl groups membrane, Desalination 316(2013) 127-136. [14] J.F. Hester, P. Banerjee, A.M. Mayes, Preparation of protein-resistant surfaces on poly (vinylidene fluoride) membranes via surface segregation, Macromolecules 32(1999) 1643-1650. [15] S. Kang, A. Asatekin, A.M. Mayes, M. Elimelech, Protein antifouling mechanisms of PAN UF membranes incorporating PAN-g-PEO additive, J. Membr. Sci. 296(2007) 42-50. [16] W.J. Chen, Y.L. Su, J.M. Peng, Y.A. Dong, X.T. Zhao, Z.Y. Jiang, Engineering a robust, versatile amphiphilic membrane surface through forced surface segregation for ultralow flux-decline, Adv. Funct. Mater. 21(2011) 191-198. [17] W. Zhao, Y.L. Su, C. Li, Q. Shi, X. Ning, Z.Y. Jiang, Fabrication of antifouling polyethersulfone ultrafiltration membranes using Pluronic F127 as both surface modifier and pore-forming agent, J. Membr. Sci. 318(2008) 405-412. [18] S.F. Wang, J.Y. Feng, Y. Xie, Z.Z. Tian, D.D. Peng, H. Wu, Z.Y. Jiang, Constructing asymmetric membranes via surface segregation for efficient carbon capture, J. Membr. Sci. 500(2016) 25-32. [19] Y.F. Zhao, P.B. Zhang, J. Sun, C.J. Liu, L.P. Zhu, Y.Y. Xu, Electrolyte-responsive polyethersulfone membranes with zwitterionic polyethersulfone-based copolymers as additive, J. Membr. Sci. 510(2016) 306-313. [20] L.F. Hancock, S.M. Fagan, M.S. Ziolo, Hydrophilic, semipermeable membranes fabricated with poly(ethylene oxide)-polysulfone block copolymer, Biomaterials 21(2000) 725-733. [21] Y. Wang, Nondestructive creation of ordered nanopores by selective swelling of block copolymers:Toward homoporous membranes, Acc. Chem. Res. 49(2016) 1401-1408. [22] N. Yan, Y. Wang, Selective swelling induced pore generation of amphiphilic block copolymers:The role of swelling agents, J. Polym. Sci. Polym. Phys. 54(2016) 926-933. [23] Z. Wang, X. Yao, Y. Wang, Swelling-induced mesoporous block copolymer membranes with intrinsically active surfaces for size-selective separation, J. Mater. Chem. 22(2012) 20542-20548. [24] Y. Wang, F. Li, An emerging pore-making strategy:Confined swelling-induced pore generation in block copolymer materials, Adv. Mater. 23(2011) 2134-2148. [25] H. Yang, Z.G. Wang, Q.Q. Lan, Y. Wang, Antifouling ultrafiltration membranes by selective swelling of polystyrene/poly(ethylene oxide) block copolymers, J. Membr. Sci. 542(2017) 226-232. [26] Z.G. Wang, R. Liu, H. Yang, Y. Wang, Nanoporous polysulfones with in situ PEGylated surfaces by a simple swelling strategy using paired solvents, Chem. Commun. 53(2017) 9105-9108. [27] V. Abetz, P.F.W. Simon, Phase behaviour and morphologies of block copolymers, Adv. Polym. Sci. 189(2005) 125-212. [28] S.B. Darling, Directing the self-assembly of block copolymers, Prog. Polym. Sci. 32(2007) 1152-1204. [29] X.C. Fan, Y.L. Su, X.T. Zhao, Y.F. Li, R.N. Zhang, T.Y. Ma, Y.N. Liu, Z.Y. Jiang, Manipulating the segregation behavior of polyethylene glycol by hydrogen bonding interaction to endow ultrafiltration membranes with enhanced antifouling performance, J. Membr. Sci. 499(2016) 56-64. [30] X.Z. Zhao, H.X. Xuan, C.J. He, Enhanced separation and antifouling properties of PVDF ultrafiltration membranes with surface covalent self-assembly of polyethylene glycol, RSC Adv. 5(2015) 81115-81122. [31] R.M. Gol, S.K. Jewrajka, Facile in situ PEGylation of polyamide thin film composite membranes for improving fouling resistance, J. Membr. Sci. 455(2014) 271-282. |