References
- M.T. Tsehaye, S. Velizarov, B. Van der Bruggen, Stability of
polyethersulfone membranes to oxidative agents: a review,
Polym. Degrad. Stab., 157 (2018) 15–33.
- S. Lotfi, K. Fischer, A. Schulze, A.I. Schafer, Photocatalytic
degradation of steroid hormone micropollutants by TiO2-coated
polyethersulfone membranes in a continuous flow-through
process, Nat. Nanotechnol., 17 (2022) 417–423.
- C. Zhao, J. Xue, F. Ran, S. Sun, Modification of polyethersulfone
membranes – a review of methods, Prog. Mater Sci.,
58 (2013) 76–150.
- W. Wang, Y. Kang, C. Cui, X. Lv, Z. Wang, B. Wang, Y. Tan,
S. Jiao, G. Pang, Fabrication of under liquid dual superlyophobic
membrane via anchoring polyethersulfone nanoparticles
on Zn-Ni-Co layered double hydroxide (LDH) nanowires
with stainless steel mesh as supporter, Sep. Purif. Technol.,
294 (2022) 121148, doi: 10.1016/j.seppur.2022.121148.
- M. Ouda, A. Hai, R. Krishnamoorthy, B. Govindan,
I. Othman, C.C. Kui, M.Y. Choi, S.W. Hasan, F. Banat, Surface
tuned polyethersulfone membrane using an iron oxide
functionalized halloysite nanocomposite for enhanced humic
acid removal, Environ. Res., 204 (2022) 112113, doi: 10.1016/j.envres.2021.112113.
- M. Aslam, R. Ahmad, J. Kim, Recent developments in
biofouling
control in membrane bioreactors for domestic
wastewater treatment, Sep. Purif. Technol., 206 (2018) 297–315.
- J. Yang, X. Zhu, J. Lin, Q. Wang, L. Zhang, N. Yang, L. Lin, J. Zhao,
Y. Zhao, L. Chen, Integration of a hydrophilic hyperbranched
polymer and a quaternary ammonium compound to mitigate
membrane biofouling, ACS Appl. Polym. Mater., 4 (2022)
229–239.
- L. Ren, J. Chen, Q. Lu, J. Han, H. Wu, Anti-biofouling
nanofiltration membrane constructed by in-situ photografting
bactericidal and hydrophilic polymers, J. Membr. Sci.,
617 (2021) 118658, doi: 10.1016/j.memsci.2020.118658.
- W. Wang, L. Zhu, B. Shan, C. Xie, C. Liu, F. Cui, G. Li, Preparation
and characterization of SLS-CNT/PES ultrafiltration membrane
with antifouling and antibacterial properties, J. Membr.
Sci., 548 (2018) 459–469.
- Z. Qiu, J. Chen, R. Dai, Z. Wang, Modification of ultrafiltration
membrane with antibacterial agent intercalated layered
nanosheets: toward superior antibiofouling performance for
water treatment, Water Res., 219 (2022) 118539, doi: 10.1016/j.watres.2022.118539.
- S. Dadari, M. Rahimi, S. Zinadini, Novel antibacterial and
antifouling PES nanofiltration membrane incorporated
with green synthesized nickel-bentonite nanoparticles for
heavy metal ions removal, Chem. Eng. J., 431 (2022) 134116,
doi: 10.1016/j.cej.2021.134116.
- K. Zodrow, L. Brunet, S. Mahendra, D. Li, A. Zhang, Q. Li,
P.J. Alvarez, Polysulfone ultrafiltration membranes impregnated
with silver nanoparticles show improved biofouling
resistance and virus removal, Water Res., 43 (2009) 715–723.
- S. Al Aani, V. Gomez, C.J. Wright, N. Hilal, Fabrication of
antibacterial mixed matrix nanocomposite membranes using
hybrid nanostructure of silver coated multi-walled carbon
nanotubes, Chem. Eng. J., 326 (2017) 721–736.
- A. Avornyo, A. Thanigaivelan, R. Krishnamoorthy, S.W. Hassan,
F. Banat, Ag-CuO-decorated ceramic membranes for effective
treatment of oily wastewater, Membranes, 13 (2023) 176,
doi: 10.3390/membranes13020176.
- S. Liu, F. Fang, J. Wu, K. Zhang, The anti-biofouling properties
of thin-film composite nanofiltration membranes grafted
with biogenic silver nanoparticles, Desalination, 375 (2015)
121–128.
- X. Wu, F. Fang, B. Zhang, J.J. Wu, K. Zhang, Biogenic silver
nanoparticles-modified forward osmosis membranes with
mitigated internal concentration polarization and enhanced
antibacterial properties, npj Clean Water, 5 (2022) 50,
doi: 10.1038/s41545-022-00199-6.
- S. Liu, M. Zhang, F. Fang, L. Cui, J. Wu, R. Field, K. Zhang,
Biogenic silver nanocomposite TFC nanofiltration membrane
with antifouling properties, Desal. Water Treat., 57 (2015)
10560–10571.
- H. Zhao, M. Wang, Y. Cui, C. Zhang, Can we arrest the evolution
of antibiotic resistance? The differences between the effects
of silver nanoparticles and silver ions, Environ. Sci. Technol.,
56 (2022) 5090–5101.
- Z. Liu, Y. Hu, Sustainable antibiofouling properties of thin
film composite forward osmosis membrane with rechargeable
silver nanoparticles loading, ACS Appl. Mater. Interfaces,
8 (2016) 21666–21673.
- S. Chernousova, M. Epple, Silver as antibacterial agent: ion,
nanoparticle, and metal, Angew. Chem. Int. Ed. Engl., 52 (2013)
1636–1653.
- B. Le Ouay, F. Stellacci, Antibacterial activity of silver
nanoparticles: a surface science insight, Nano Today, 10 (2015)
339–354.
- Y. Lv, H. Liu, Z. Wang, S. Liu, L. Hao, Y. Sang, D. Liu, J. Wang,
R.I. Boughton, Silver nanoparticle-decorated porous ceramic
composite for water treatment, J. Membr. Sci., 331 (2009)
50–56.
- X. Li, R. Pang, J. Li, X. Sun, J. Shen, W. Han, L. Wang, In-situ
formation of Ag nanoparticles in PVDF ultrafiltration membrane
to mitigate organic and bacterial fouling, Desalination,
324 (2013) 48–56.
- D.Y. Zhang, Q. Hao, J. Liu, Y.S. Shi, J. Zhu, L. Su, Y. Wang,
Antifouling polyimide membrane with grafted silver
nanoparticles and zwitterion, Sep. Purif. Technol., 192 (2018)
230–239.
- W. Chou, D. Yu, M. Yang, The preparation and characterization
of silver-loading cellulose acetate hollow fiber membrane for
water treatment, Polym. Adv. Technol., 16 (2005) 600–607.
- S. Qin, M. Xie, S. Cao, J. Li, L. Wang, S.H. Luo, M. Lv, Insight
into the antibacterial resistance of graphdiyne functionalized
by silver nanoparticles, Cell Proliferation, 55 (2022) e13236,
doi: 10.1111/cpr.13236.
- P. Wang, H. Zhu, S. Bao, M. Du, M. Zhang, AgNPs/PVA and
AgNPs/(PVA/PEI) hybrids: preparation, morphology and
antibacterial activity, J. Phys. D: Appl. Phys., 46 (2013) 345303,
doi: 10.1088/0022–3727/46/34/345303.
- X. Dai, Q. Guo, Y. Zhao, P. Zhang, T. Zhang, X. Zhang, C. Li,
Functional silver nanoparticle as a benign antimicrobial agent
that eradicates antibiotic-resistant bacteria and promotes
wound healing, ACS Appl. Mater. Interfaces, 8 (2016)
25798–25807.
- W. Shao, X. Liu, H. Min, G. Dong, Q. Feng, S. Zuo, Preparation,
characterization, and antibacterial activity of silver nanoparticle-
decorated graphene oxide nanocomposite, ACS Appl.
Mater. Interfaces, 7 (2015) 6966–6973.
- Y. Zhou, J. Yang, T. He, H. Shi, X. Cheng, Y. Lu, Highly stable
and dispersive silver nanoparticle-graphene composites by
a simple and low-energy-consuming approach and their
antimicrobial activity, Small, 9 (2013) 3445–3454.
- R.R. Khaydarov, R.A. Khaydarov, Y. Estrin, S. Evgrafova,
T. Scheper, C. Endres, S.Y. Cho, Nanomaterials: Risks and
Benefits, I. Linkov, J. Steevens, Eds., Springer, Dordrecht,
2009, pp. 287–297.
- P.F. Andrade, A.F. de Faria, S.R. Oliveira, M.A. Arruda,
C. Goncalves Mdo, Improved antibacterial activity of
nanofiltration polysulfone membranes modified with silver
nanoparticles, Water Res., 81 (2015) 333–342.
- M. Mukherjee, R. Bandyopadhyaya, Silver nanoparticle
impregnated polyethersulfone ultrafiltration membrane:
optimization of degree of grafting of acrylic acid for biofouling
prevention and improved water permeability, J. Environ.
Chem. Eng., 8 (2020) 103711, doi: 10.1016/j.jece.2020.103711.
- E. Zhang, Y. Zhao, W. Yang, H. Chen, W. Liu, X. Dai, X. Qiu,
X. Ji, Viscoelastic behaviour and relaxation modes of one
polyamic acid organogel studied by rheometers and dynamic
light scattering, Soft Matter, 14 (2017) 73–82.
- H.C. Yu, J.Y. Choi, J.W. Jeong, B.J. Kim, C.M. Chung, Simple
and easy recycling of poly(amic acid) gels through microwave
irradiation, J. Polym. Sci., Part A: Polym. Chem., 55 (2017)
981–987.
- S. Hamnca, J. Chamier, S. Grant, T. Glass, E. Iwuoha, P. Baker,
Spectroscopy, morphology, and electrochemistry of electrospun
polyamic acid nanofibers, Front. Chem., 9 (2021) 782813,
doi: 10.3389/fchem.2021.782813.
- D. Rana, K. Bag, S.N. Bhattacharyya, B.M. Mandal, Miscibility
and phase diagrams of poly(phenyl acrylate) and poly(styreneco-
acrylonitrile) blends, J. Polym. Sci., Part B: Polym. Phys.,
38 (2000) 369–375.
- D. Rana, B.M. Mandal, S.N. Bhattacharyya, Miscibility of
poly(styrene-co-butyl acrylate) with poly(ethyl methacrylate):
existence of both UCST and LCST, Polym. Plast. Technol. Eng.,
34 (1993) 1454–1459.
- K. Wang, S. Wang, K. Gu, W. Yan, Y. Zhou, C. Gao, Ultralow
pressure PES ultrafiltration membrane with high-flux
and enhanced anti-oil-fouling properties prepared via in-situ
polycondensation of polyamic acid, Sci. Total Environ.,
842 (2022) 156661, doi: 10.1016/j.scitotenv.2022.156661.
- K. Rambabu, S. Gokul, A.S. Russel, A. Sivaramakrishna,
B. Ponnusami, F. Banat, Lithium perchlorate modified
nanoporous polyethersulfone membranes for improved dye
rejection, Desal. Water Treat., 122 (2018) 146–157.
- T. Arumugham, M. Ouda, R. Krishnamoorthy, A. Hai,
N. Gnanasundaram, S.W. Hasan, F. Banat, Surfaceengineered
polyethersulfone membranes with inherent Fe-Mn
bimetallic oxides for improved permeability and antifouling
capability, Environ. Res., 204 (2022) 112390, doi: 10.1016/j.envres.2021.112390.
- P. Kallem, G. Bharath, K. Rambabu, C. Srinivasakannan,
F. Banat, Improved permeability and antifouling performance
of polyethersulfone ultrafiltration membranes tailored by
hydroxyapatite/boron nitride nanocomposites, Chemosphere,
268 (2021) 129306, doi: 10.1016/j.chemosphere.2020.129306.
- D. Coelho, A. Sampaio, C. Silva, H.P. Felgueiras, M.T.P. Amorim,
A. Zille, Antibacterial electrospun poly(vinyl alcohol)/
enzymatic synthesized poly(catechol) nanofibrous midlayer
membrane for ultrafiltration, ACS Appl. Mater. Interfaces,
9 (2017) 33107–33118.
- Y. Zhai, Q. Yang, R. Zhu, Y. Gu, The study on imidization
degree of polyamic acid in solution and ordering degree of
its polyimide film, J. Mater. Sci., 43 (2007) 338–344.
- K.H. Moon, B. Chae, K.S. Kim, S.W. Lee, Y.M. Jung, Preparation
and characterization of transparent polyimide-silica composite
films using polyimide with carboxylic acid groups,
Polymers, 11 (2019) 1–10.
- D.T. Padavan, W.K. Wan, Synthesis and characterization
of a novel versatile poly(amic acid) derived from
ethylenediaminetetraacetic dianhydride, Mater. Chem. Phys.,
124 (2010) 427–433.
- Z. Wang, Z. Wu, Y. Zhang, J. Meng, Hyperbranched-polyoltethered
poly(amic acid) electrospun nanofiber membrane with
ultrahigh adsorption capacity for boron removal, Appl. Surf.
Sci., 402 (2017) 21–30.
- S.M. Imran, S.A. Moiz, M.M. Ahmed, J.H. Lee, H.T. Kim,
Structural Characterization of the Silver-Polyaniline
Nanocomposite for Electronic Devices, 2009 IEEE 13th
International Multitopic Conference, IEEE, Islamabad,
Pakistan, 2009, pp. 1–4.
- M.S. Haider, G.N. Shao, S.M. Imran, S.S. Park, N. Abbas,
M.S. Tahir, M. Hussain, W. Bae, H.T. Kim, Aminated
polyethersulfone-silver nanoparticles (AgNPs-APES)
composite membranes with controlled silver ion release for
antibacterial and water treatment applications, Mater. Sci.
Eng., C, 62 (2016) 732–745.
- A.K. Ghosh, B.H. Jeong, X. Huang, E.M.V. Hoek, Impacts of
reaction and curing conditions on polyamide composite reverse
osmosis membrane properties, J. Membr. Sci., 311 (2008)
34–45.
- G. Hurwitz, G.R. Guillen, E.M.V. Hoek, Probing polyamide
membrane surface charge, zeta potential, wettability, and
hydrophilicity with contact angle measurements, J. Membr. Sci.,
349 (2010) 349–357.
- Y. Chen, R. Sun, W. Yan, M. Wu, Y. Zhou, C. Gao, Antibacterial
polyvinyl alcohol nanofiltration membrane incorporated with
Cu(OH)2 nanowires for dye/salt wastewater treatment, Sci.
Total Environ., 817 (2022) 152897, doi: 10.1016/j.scitotenv.2021.152897.
- M. Sadrzadeh, S. Bhattacharjee, Rational design of phase
inversion membranes by tailoring thermodynamics and
kinetics of casting solution using polymer additives, J. Membr.
Sci., 441 (2013) 31–44.
- M. Zhang, K. Zhang, B. De Gusseme, W. Verstraete, Biogenic
silver nanoparticles (bio-Ag0) decrease biofouling of bio-Ag0/PES nanocomposite membranes, Water Res., 46 (2012)
2077–2087.
- X. Cao, M. Tang, F. Liu, Y. Nie, C. Zhao, Immobilization of silver
nanoparticles onto sulfonated polyethersulfone membranes
as antibacterial materials, Colloids Surf., B, 81 (2010)
555–562.
- M. Zhang, R.W. Field, K. Zhang, Biogenic silver nanocomposite
polyethersulfone UF membranes with antifouling
properties, J. Membr. Sci., 471 (2014) 274–284.
- W.K. Jung, H.C. Koo, K.W. Kim, S. Shin, S.H. Kim,
Y.H. Park, Antibacterial activity and mechanism of action
of the silver ion in Staphylococcus aureus and Escherichia coli,
Appl. Environ. Microbiol., 74 (2008) 2171–2178.
- I. Sondi, B. Salopek-Sondi, Silver nanoparticles as antimicrobial
agent: a case study on E. coli as a model for gram-negative
bacteria, J. Colloid Interface Sci., 275 (2004) 177–182.
- J.A. Lemire, J.J. Harrison, R.J. Turner, Antimicrobial activity
of metals: mechanisms, molecular targets and applications,
Nat. Rev. Microbiol., 11 (2013) 371–384.
- Z. Xu, S. Ye, G. Zhang, W. Li, C. Gao, C. Shen, Q. Meng,
Antimicrobial polysulfone blended ultrafiltration membranes
prepared with Ag/Cu2O hybrid nanowires, J. Membr. Sci.,
509 (2016) 83–93.
- P.V. AshaRani, G.L.K. Mun, M.P. Hande, S. Valiyaveettil,
Cytotoxicity and genotoxicity of silver nanoparticles in
human cells, ACS Nano, 3 (2008) 279–290.
- B. Ajitha, Y. Ashok Kumar Reddy, P. Sreedhara Reddy,
Enhanced antimicrobial activity of silver nanoparticles with
controlled particle size by pH variation, Powder Technol.,
269 (2015) 110–117.
- C. Baker, A. Pradhan, L. Pakstis, D.J. Pochan, S.I. Shah,
Synthesis and antibacterial properties of silver nanoparticles,
J. Nanosci. Nanotechnol., 5 (2005) 244–249.
- Q. Zheng, P. Wang, Y. Yang, D. Cui, The relationship between
porosity and kinetics parameter of membrane formation in
PSF ultrafiltration membrane, J. Membr. Sci., 286 (2006) 7–11.
- G.R. Guillen, Y. Pan, M. Li, E.M.V. Hoek, Preparation and
characterization of membranes formed by nonsolvent induced
phase separation: a review, Ind. Eng. Chem. Res., 50 (2011)
3798–3817.