메뉴 건너뛰기




Volumn 499, Issue , 2016, Pages 56-64

Manipulating the segregation behavior of polyethylene glycol by hydrogen bonding interaction to endow ultrafiltration membranes with enhanced antifouling performance

Author keywords

Antifouling performance; Hydrogen bonding interaction; Polyethylene glycol; Surface segregation; Ultrafiltration membrane

Indexed keywords

DEIONIZED WATER; GRAFTING (CHEMICAL); HYDROGEN BONDS; MEMBRANE FOULING; MEMBRANES; PHASE SEPARATION; PHOTOELECTRON SPECTROSCOPY; POLYETHYLENE GLYCOLS; POLYETHYLENE OXIDES; POLYETHYLENES; ULTRAFILTRATION; X RAY PHOTOELECTRON SPECTROSCOPY;

EID: 84946433969     PISSN: 03767388     EISSN: 18733123     Source Type: Journal    
DOI: 10.1016/j.memsci.2015.10.026     Document Type: Article
Times cited : (101)

References (31)
  • 1
    • 73549111556 scopus 로고    scopus 로고
    • Operational optimization of air conditioning cooling water system with UF-RO desalination
    • Yan H., Liu L., Yang F., Takaoka D., Wang C. Operational optimization of air conditioning cooling water system with UF-RO desalination. Desalination 2010, 251:53-57.
    • (2010) Desalination , vol.251 , pp. 53-57
    • Yan, H.1    Liu, L.2    Yang, F.3    Takaoka, D.4    Wang, C.5
  • 2
    • 0038201509 scopus 로고    scopus 로고
    • A dual membrane UF/RO process for reclamation of spent rinses from a nickel-plating operation-a case study
    • Qin J.-J., Oo M.-H., Wai M.-N., Ang C.M., Wong F.-S., Lee H. A dual membrane UF/RO process for reclamation of spent rinses from a nickel-plating operation-a case study. Water Res. 2003, 37:3269-3278.
    • (2003) Water Res. , vol.37 , pp. 3269-3278
    • Qin, J.-J.1    Oo, M.-H.2    Wai, M.-N.3    Ang, C.M.4    Wong, F.-S.5    Lee, H.6
  • 3
    • 84911059078 scopus 로고    scopus 로고
    • Novel heparin-mimicking polymer brush grafted carbon nanotube/PES composite membranes for safe and efficient blood purification
    • Nie C., Ma L., Xia Y., He C., Deng J., Wang L., Cheng C., Sun S., Zhao C. Novel heparin-mimicking polymer brush grafted carbon nanotube/PES composite membranes for safe and efficient blood purification. J. Membr. Sci. 2015, 475:455-468.
    • (2015) J. Membr. Sci. , vol.475 , pp. 455-468
    • Nie, C.1    Ma, L.2    Xia, Y.3    He, C.4    Deng, J.5    Wang, L.6    Cheng, C.7    Sun, S.8    Zhao, C.9
  • 4
    • 84921493593 scopus 로고    scopus 로고
    • Improving permeability and antifouling performance of polyethersulfone ultrafiltration membrane by incorporation of ZnO-DMF dispersion containing nano-ZnO and polyvinylpyrrolidone
    • Zhao S., Yan W., Shi M., Wang Z., Wang J., Wang S. Improving permeability and antifouling performance of polyethersulfone ultrafiltration membrane by incorporation of ZnO-DMF dispersion containing nano-ZnO and polyvinylpyrrolidone. J. Membr. Sci. 2015, 478:105-116.
    • (2015) J. Membr. Sci. , vol.478 , pp. 105-116
    • Zhao, S.1    Yan, W.2    Shi, M.3    Wang, Z.4    Wang, J.5    Wang, S.6
  • 5
    • 84928577572 scopus 로고    scopus 로고
    • Membrane fouling during ultra- and microfiltration of whey and whey proteins at different environmental conditions: the role of aggregated whey proteins as fouling initiators
    • Steinhauer T., Marx M., Bogendörfer K., Kulozik U. Membrane fouling during ultra- and microfiltration of whey and whey proteins at different environmental conditions: the role of aggregated whey proteins as fouling initiators. J. Membr. Sci. 2015, 489:20-27.
    • (2015) J. Membr. Sci. , vol.489 , pp. 20-27
    • Steinhauer, T.1    Marx, M.2    Bogendörfer, K.3    Kulozik, U.4
  • 6
    • 84891879423 scopus 로고    scopus 로고
    • Salt-induced fabrication of superhydrophilic and underwater superoleophobic PAA-g-PVDF membranes for effective separation of oil-in-water emulsions
    • Zhang W., Zhu Y., Liu X., Wang D., Li J., Jiang L., Jin J. Salt-induced fabrication of superhydrophilic and underwater superoleophobic PAA-g-PVDF membranes for effective separation of oil-in-water emulsions. Angew. Chem. Int. Ed. 2014, 53:856-860.
    • (2014) Angew. Chem. Int. Ed. , vol.53 , pp. 856-860
    • Zhang, W.1    Zhu, Y.2    Liu, X.3    Wang, D.4    Li, J.5    Jiang, L.6    Jin, J.7
  • 7
    • 15844364005 scopus 로고    scopus 로고
    • Self-assembled monolayers of alkanethiolates presenting tri(propylene sulfoxide) groups resist the adsorption of protein
    • Deng L., Mrksich M., Whitesides G.M. Self-assembled monolayers of alkanethiolates presenting tri(propylene sulfoxide) groups resist the adsorption of protein. J. Am. Chem. Soc. 1996, 118:5136-5137.
    • (1996) J. Am. Chem. Soc. , vol.118 , pp. 5136-5137
    • Deng, L.1    Mrksich, M.2    Whitesides, G.M.3
  • 8
    • 84888769814 scopus 로고    scopus 로고
    • Polyethylene glycol cross-linked sulfonated polyethersulfone based filtration membranes with improved antifouling tendency
    • Tripathi B.P., Dubey N.C., Stamm M. Polyethylene glycol cross-linked sulfonated polyethersulfone based filtration membranes with improved antifouling tendency. J. Membr. Sci. 2014, 453:263-274.
    • (2014) J. Membr. Sci. , vol.453 , pp. 263-274
    • Tripathi, B.P.1    Dubey, N.C.2    Stamm, M.3
  • 9
    • 84861177875 scopus 로고    scopus 로고
    • Investigation of the hydration of nonfouling material poly(sulfobetaine methacrylate) by low-field nuclear magnetic resonance
    • Wu J., Lin W., Wang Z., Chen S. Investigation of the hydration of nonfouling material poly(sulfobetaine methacrylate) by low-field nuclear magnetic resonance. Langmuir 2012, 28:7436-7441.
    • (2012) Langmuir , vol.28 , pp. 7436-7441
    • Wu, J.1    Lin, W.2    Wang, Z.3    Chen, S.4
  • 10
    • 77951246556 scopus 로고    scopus 로고
    • Surface modifications for antifouling membranes
    • Rana D., Matsuura T. Surface modifications for antifouling membranes. Chem. Rev. 2010, 110:2448-2471.
    • (2010) Chem. Rev. , vol.110 , pp. 2448-2471
    • Rana, D.1    Matsuura, T.2
  • 11
    • 84864312112 scopus 로고    scopus 로고
    • A bioinspired fouling-resistant surface modification for water purification membranes
    • McCloskey B.D., Park H.B., Ju H., Rowe B.W., Miller D.J., Freeman B.D. A bioinspired fouling-resistant surface modification for water purification membranes. J. Membr. Sci. 2012, 413:82-90.
    • (2012) J. Membr. Sci. , vol.413 , pp. 82-90
    • McCloskey, B.D.1    Park, H.B.2    Ju, H.3    Rowe, B.W.4    Miller, D.J.5    Freeman, B.D.6
  • 12
    • 0033537588 scopus 로고    scopus 로고
    • Preparation of protein-resistant surfaces on poly(vinylidene fluoride) membranes via surface segregation
    • Hester J.F., Banerjee P., Mayes A.M. Preparation of protein-resistant surfaces on poly(vinylidene fluoride) membranes via surface segregation. Macromolecules 1999, 32:1643-1650.
    • (1999) Macromolecules , vol.32 , pp. 1643-1650
    • Hester, J.F.1    Banerjee, P.2    Mayes, A.M.3
  • 13
    • 29444450096 scopus 로고    scopus 로고
    • Remarkable reduction of irreversible fouling and improvement of the permeation properties of poly(ether sulfone) ultrafiltration membranes by blending with pluronic F127
    • Wang Y.Q., Wang T., Su Y.L., Peng F.B., Wu H., Jiang Z.Y. Remarkable reduction of irreversible fouling and improvement of the permeation properties of poly(ether sulfone) ultrafiltration membranes by blending with pluronic F127. Langmuir 2005, 21:11856-11862.
    • (2005) Langmuir , vol.21 , pp. 11856-11862
    • Wang, Y.Q.1    Wang, T.2    Su, Y.L.3    Peng, F.B.4    Wu, H.5    Jiang, Z.Y.6
  • 14
    • 43549108135 scopus 로고    scopus 로고
    • Fabrication of antifouling polyethersulfone ultrafiltration membranes using Pluronic F127 as both surface modifier and pore forming agent
    • Zhao W., Su Y., Li C., Shi Q., Ning X., Jiang Z. Fabrication of antifouling polyethersulfone ultrafiltration membranes using Pluronic F127 as both surface modifier and pore forming agent. J. Membr. Sci. 2008, 318:405-412.
    • (2008) J. Membr. Sci. , vol.318 , pp. 405-412
    • Zhao, W.1    Su, Y.2    Li, C.3    Shi, Q.4    Ning, X.5    Jiang, Z.6
  • 15
    • 84883224249 scopus 로고    scopus 로고
    • Insight into the role of amphiphilic pluronic block copolymer as pore forming additive in PVDF membrane formation
    • Loh C.H., Wang R. Insight into the role of amphiphilic pluronic block copolymer as pore forming additive in PVDF membrane formation. J. Membr. Sci. 2013, 446:492-503.
    • (2013) J. Membr. Sci. , vol.446 , pp. 492-503
    • Loh, C.H.1    Wang, R.2
  • 16
    • 0032554152 scopus 로고    scopus 로고
    • Effect of PEG additive on membrane formation by phase inversion
    • Kim J.-H., Lee K.-H. Effect of PEG additive on membrane formation by phase inversion. J. Membr. Sci. 1998, 138:153-163.
    • (1998) J. Membr. Sci. , vol.138 , pp. 153-163
    • Kim, J.-H.1    Lee, K.-H.2
  • 17
    • 84899555988 scopus 로고    scopus 로고
    • Fabrication of polyvinyl chloride ultrafiltration membranes with stable antifouling performance by exploring the pore formation and surface modification capabilities of polyvinyl formal
    • Fan X., Su Y., Zhao X., Li Y., Zhang R., Zhao J., Jiang Z., Zhu J., Ma Y., Liu Y. Fabrication of polyvinyl chloride ultrafiltration membranes with stable antifouling performance by exploring the pore formation and surface modification capabilities of polyvinyl formal. J. Membr. Sci. 2014, 464:100-109.
    • (2014) J. Membr. Sci. , vol.464 , pp. 100-109
    • Fan, X.1    Su, Y.2    Zhao, X.3    Li, Y.4    Zhang, R.5    Zhao, J.6    Jiang, Z.7    Zhu, J.8    Ma, Y.9    Liu, Y.10
  • 19
    • 84923879290 scopus 로고    scopus 로고
    • Improved antifouling performance of PVDF membranes by incorporating an amphiphilic block-like copolymer for oil/water emulsion separation
    • Liu Y., Su Y., Li Y., Zhao X., Jiang Z. Improved antifouling performance of PVDF membranes by incorporating an amphiphilic block-like copolymer for oil/water emulsion separation. RSC Adv. 2015, 5:21349-21359.
    • (2015) RSC Adv. , vol.5 , pp. 21349-21359
    • Liu, Y.1    Su, Y.2    Li, Y.3    Zhao, X.4    Jiang, Z.5
  • 21
    • 84922738435 scopus 로고    scopus 로고
    • Coordination-enabled synergistic surface segregation for fabrication of multi-defense mechanism membranes
    • Zhao X., Su Y., Dai H., Li Y., Zhang R., Jiang Z. Coordination-enabled synergistic surface segregation for fabrication of multi-defense mechanism membranes. J. Mater. Chem. A 2014, 7:3325-3331.
    • (2014) J. Mater. Chem. A , vol.7 , pp. 3325-3331
    • Zhao, X.1    Su, Y.2    Dai, H.3    Li, Y.4    Zhang, R.5    Jiang, Z.6
  • 22
    • 78650802615 scopus 로고    scopus 로고
    • Protein fouling resistant membrane prepared by amphiphilic pegylated polyethersulfone
    • Peng J., Su Y., Shi Q., Chen W., Jiang Z. Protein fouling resistant membrane prepared by amphiphilic pegylated polyethersulfone. Bioresour. Technol. 2011, 102:2289-2295.
    • (2011) Bioresour. Technol. , vol.102 , pp. 2289-2295
    • Peng, J.1    Su, Y.2    Shi, Q.3    Chen, W.4    Jiang, Z.5
  • 23
    • 58649112797 scopus 로고    scopus 로고
    • Characteristics, performance and stability of polyethersulfone ultrafiltration membranes prepared by phase separation method using different macromolecular additives
    • Susanto H., Ulbricht M. Characteristics, performance and stability of polyethersulfone ultrafiltration membranes prepared by phase separation method using different macromolecular additives. J. Membr. Sci. 2009, 327:125-135.
    • (2009) J. Membr. Sci. , vol.327 , pp. 125-135
    • Susanto, H.1    Ulbricht, M.2
  • 24
    • 84940718082 scopus 로고    scopus 로고
    • Fabrication of composite nanofiltration membranes with enhanced structural stability for concentrating oligomeric proanthocyanidins in ethanol aqueous solution
    • Ma Y., Su Y., Li Y., Jiang Z. Fabrication of composite nanofiltration membranes with enhanced structural stability for concentrating oligomeric proanthocyanidins in ethanol aqueous solution. Korean J. Chem. Eng. 2015, 1-8.
    • (2015) Korean J. Chem. Eng. , pp. 1-8
    • Ma, Y.1    Su, Y.2    Li, Y.3    Jiang, Z.4
  • 25
    • 84908362836 scopus 로고    scopus 로고
    • Interaction of sodium and potassium ions with PEO-PPO copolymer investigated by FTIR, Raman and NMR
    • Li X., Huang K., Xu Y., Liu H. Interaction of sodium and potassium ions with PEO-PPO copolymer investigated by FTIR, Raman and NMR. Vib. Spectrosc. 2014, 75:59-64.
    • (2014) Vib. Spectrosc. , vol.75 , pp. 59-64
    • Li, X.1    Huang, K.2    Xu, Y.3    Liu, H.4
  • 26
    • 74649086806 scopus 로고    scopus 로고
    • Novel zwitterionic poly(arylene ether sulfone)s as antifouling membrane material
    • Zhang Q., Zhang S., Lei D., et al. Novel zwitterionic poly(arylene ether sulfone)s as antifouling membrane material. J. Membr. Sci. 2010, 349:217-224.
    • (2010) J. Membr. Sci. , vol.349 , pp. 217-224
    • Zhang, Q.1    Zhang, S.2    Lei, D.3
  • 27
    • 77954816790 scopus 로고    scopus 로고
    • Poly (methyl methacrylate-acrylic acid-vinyl pyrrolidone) terpolymer modified polyethersulfone hollow fiber membrane with pH sensitivity and protein antifouling property
    • Wen Z., Yun H., Jie L., et al. Poly (methyl methacrylate-acrylic acid-vinyl pyrrolidone) terpolymer modified polyethersulfone hollow fiber membrane with pH sensitivity and protein antifouling property. J. Membr. Sci. 2010, 1:76-84.
    • (2010) J. Membr. Sci. , vol.1 , pp. 76-84
    • Wen, Z.1    Yun, H.2    Jie, L.3
  • 28
    • 0016497998 scopus 로고
    • The formation mechanism of asymmetric membranes
    • Strathmann H., Kock K., Amar P., Baker R.W. The formation mechanism of asymmetric membranes. Desalination 1975, 16:179-203.
    • (1975) Desalination , vol.16 , pp. 179-203
    • Strathmann, H.1    Kock, K.2    Amar, P.3    Baker, R.W.4
  • 30
    • 0017535647 scopus 로고
    • The formation mechanism of phase inversion membranes
    • Strathmann H., Kock K. The formation mechanism of phase inversion membranes. Desalination 1977, 21:241-255.
    • (1977) Desalination , vol.21 , pp. 241-255
    • Strathmann, H.1    Kock, K.2
  • 31
    • 0029490877 scopus 로고
    • Pore formation mechanism of membranes from phase inversion process
    • Young T.-H., Chen L.-W. Pore formation mechanism of membranes from phase inversion process. Desalination 1995, 103:233-247.
    • (1995) Desalination , vol.103 , pp. 233-247
    • Young, T.-H.1    Chen, L.-W.2


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.