REFERENCES
[1] J.E. Glass, Polymers in aqueous media: performance through association, American
chemical society1989.
[2] M.A. Winnik, A. Yekta, Associative polymers in aqueous solution, Current opinion in
colloid & interface science 2(4) (1997) 424-436.
[3] Y.A. Shashkina, Y.D. Zaroslov, V. Smirnov, O. Philippova, A. Khokhlov, T. Pryakhina,
N. Churochkina, Hydrophobic aggregation in aqueous solutions of hydrophobically
modified polyacrylamide in the vicinity of overlap concentration, Polymer 44(8)
(2003) 2289-2293.
[4] G. Bokias, D. Hourdet, I. Iliopoulos, G. Staikos, R. Audebert, Hydrophobic interactions
of poly (N-isopropylacrylamide) with hydrophobically modified poly (sodium
acrylate) in aqueous solution, Macromolecules 30(26) (1997) 8293-8297.
[5] R. Liu, W. Pu, L. Wang, Q. Chen, Z. Li, Y. Li, B. Li, Solution properties and phase
behavior of a combination flooding system consisting of hydrophobically amphoteric
polyacrylamide, alkyl polyglycoside and n-alcohol at high salinities, RSC Advances
5(86) (2015) 69980-69989.
[6] E.K. Penott-Chang, L. Gouveia, I.J. Fernández, A.J. Müller, A. Dí
az-Barrios, A.E. Sáez,
Rheology of aqueous solutions of hydrophobically modified polyacrylamides and
surfactants, Colloids and Surfaces A: Physicochemical and Engineering Aspects
295(1) (2007) 99-106.
[7] Z.L. Yang, B.Y. Gao, C.X. Li, Q.Y. Yue, B. Liu, Synthesis and characterization of
hydrophobically associating cationic polyacrylamide, Chemical Engineering Journal
161(1) (2010) 27-33.
[8] K.C. Taylor, H.A. Nasr-El-Din, Water-soluble hydrophobically associating polymers
for improved oil recovery: A literature review, Journal of Petroleum Science and
Engineering 19(3) (1998) 265-280.
[9] K. Wang, I. Iliopoulos, R. Audebert, Viscometric behaviour of hydrophobically
modified poly (sodium acrylate), Polymer Bulletin 20(6) (1988) 577-582.
[10] B. Xie, Z. Qiu, J. Cao, W. Huang, H. Zhong, A novel hydrophobically modified
polyacrylamide as a sealing agent in water-based drilling fluid, Petroleum Science and
Technology 31(18) (2013) 1866-1872.
134
[11] K. Dreher, W. Gogarty, An overview of mobility control in micellar/polymer
enhanced oil recovery processes, Journal of Rheology (1978-present) 23(2) (1979)
209-229.
[12] M. Camail, A. Margaillan, I. Martin, Copolymers of N
‐
alkyl
‐
and N
‐
arylalkylacrylamides with acrylamide: influence of hydrophobic structure on
associative properties. Part I: viscometric behaviour in dilute solution and drag
reduction performance, Polymer International 58(2) (2009) 149-154.
[13] R. Hecker, The characterisation of polyacrylamide flocculants, (1998).
[14] P. Cheremisinoff, Handbook of engineering polymeric materials, CRC Press1997.
[15] F. Candau, J. Selb, Hydrophobically-modified polyacrylamides prepared by micellar
polymerization, Advances in Colloid and Interface Science 79(2) (1999) 149-172.
[16] C. Patrickios, W. Hertler, N. Abbott, T. Hatton, Diblock, ABC triblock, and random
methacrylic polyampholytes: synthesis by group transfer polymerization and solution
behavior, Macromolecules 27(4) (1994) 930-937.
[17] F. Candau, S. Biggs, A. Hill, J. Selb, Synthesis, structure and properties of
hydrophobically associating polymers, Progress in organic coatings 24(1) (1994) 11-
19.
[18] W. Xue, I.W. Hamley, V. Castelletto, P.D. Olmsted, Synthesis and characterization of
hydrophobically modified polyacrylamides and some observations on rheological
properties, European Polymer Journal 40(1) (2004) 47-56.
[19] S. Biggs, J. Selb, F. Candau, Effect of surfactant on the solution properties of
hydrophobically modified polyacrylamide, Langmuir 8(3) (1992) 838-847.
[20] H.M. Kopperud, F.K. Hansen, B. Nyström, Effect of surfactant and temperature on
the rheological properties of aqueous solutions of unmodified and hydrophobically
modified polyacrylamide, Macromolecular Chemistry and Physics 199(11) (1998)
2385-2394.
[21] P. Reb, K. Margarit-Puri, M. Klapper, K. Müllen, Polymerizable and
nonpolymerizable isophthalic acid derivatives as surfactants in emulsion
polymerization, Macromolecules 33(21) (2000) 7718-7723.
[22] A. Guyot, Advances in reactive surfactants, Advances in Colloid and Interface Science
108 (2004) 3-22.
135
[23] B. Gao, H. Guo, J. Wang, Y. Zhang, Preparation of hydrophobic association
polyacrylamide in a new micellar copolymerization system and its hydrophobically
associative property, Macromolecules 41(8) (2008) 2890-2897.
[24] B. Gao, L. Jiang, K. Liu, Microstructure and association property of hydrophobically
modified polyacrylamide of a new family, European Polymer Journal 43(10) (2007)
4530-4540.
[25] X.F. Zhang, W.H. Wu, Novel hydrophobically associative polyacrylamide with
tunable viscosity, Chinese Chemical Letters 20(11) (2009) 1361-1365.
[26] B. Gao, L. Jiang, D. Kong, Studies on rheological behaviour of hydrophobically
associating polyacrylamide with strong positive salinity sensitivity, Colloid and
Polymer Science 285(8) (2007) 839-846.
[27] Y. Feng, L. Billon, B. Grassl, A. Khoukh, J. François, Hydrophobically associating
polyacrylamides and their partially hydrolyzed derivatives prepared by post-
modification. 1. Synthesis and characterization, Polymer 43(7) (2002) 2055-2064.
[28] Y. Feng, L. Billon, B. Grassl, G. Bastiat, O. Borisov, J. François, Hydrophobically
associating polyacrylamides and their partially hydrolyzed derivatives prepared by
post-modification. 2. Properties of non-hydrolyzed polymers in pure water and brine,
Polymer 46(22) (2005) 9283-9295.
[29] M. Camail, A. Margaillan, I. Martin, A. Papailhou, J. Vernet, Synthesis of N-alkyl-
and N-arylalkylacrylamides and micellar copolymerization with acrylamide,
European Polymer Journal 36(9) (2000) 1853-1863.
[30] C.L. McCormick, T. Nonaka, C.B. Johnson, Water-soluble copolymers: 27. Synthesis
and aqueous solution behaviour of associative acrylamideN-alkylacrylamide
copolymers, Polymer 29(4) (1988) 731-739.
[31] L. Sperling, Introduction To Physical Polymer Science, 4th edn, 2006, Search PubMed
1-845.
[32] R.A. Orwoll, Solution polymers are prepared in water and organic solvents. Those in
aqueous solution find utility in detergents, dispersants, thickeners, and leather and
water treatments. Those in nonaqueous solutions are commonly used in, Encyclopedia
of polymer science and engineering (1989) 402.
[33] R. Pichot, F. Spyropoulos, I. Norton, O/W emulsions stabilised by both low molecular
weight surfactants and colloidal particles: The effect of surfactant type and
concentration, Journal of colloid and interface science 352(1) (2010) 128-135.
136
[34] R.C. Pasquali, M.P. Taurozzi, C. Bregni, Some considerations about the hydrophilic–
lipophilic balance system, International journal of pharmaceutics 356(1) (2008) 44-
51.
[35] Y. Tamsilian, A.R. SA, M. Shaban, S. Ayatollahi, R. Tomovska, High molecular
weight polyacrylamide nanoparticles prepared by inverse emulsion polymerization:
reaction conditions-properties relationships, Colloid and Polymer Science (2015) 1-
13.
[36] A. Abdi, M. Shahrokhi, E. Vafa, Theoretical and experimental investigations of the
inverse emulsion polymerization of acrylamide, Journal of Applied Polymer Science
132(22) (2015).
[37] M. Pabon, J. Selb, F. Candau, R.G. Gilbert, Polymerization of acrylamide in solution
and inverse emulsion: number molecular weight distribution with chain transfer agent,
Polymer 40(11) (1999) 3101-3106.
[38] T. Okano, Y. Bae, H. Jacobs, S. Kim, Thermally on-off switching polymers for drug
permeation and release, Journal of Controlled Release 11(1) (1990) 255-265.
[39] H.T. Zhang, B.A. Kawawa, F. Chen, Method for making hydrophobically associative
polymers, methods of use and compositions, Google Patents, 2002.
[40] Y. Chang, C.L. McCormick, Water-soluble copolymers. 49. Effect of the distribution
of the hydrophobic cationic monomer dimethyldodecyl (2-acrylamidoethyl)
ammonium bromide on the solution behavior of associating acrylamide copolymers,
Macromolecules 26(22) (1993) 6121-6126.
[41] G.L. Smith, C.L. McCormick, Water-soluble polymers. 80. Rheological and
photophysical studies of pH-responsive terpolymers containing hydrophobic twin-
tailed acrylamide monomers, Macromolecules 34(16) (2001) 5579-5586.
[42] Y. Chang, R.Y. Lochhead, C.L. McCormick, Water-soluble copolymers. 50. Effect of
surfactant addition on the solution properties of amphiphilic copolymers of
acrylamide and dimethyldodecyl (2-acrylamidoethyl) ammonium bromide,
Macromolecules 27(8) (1994) 2145-2150.
[43] K.M. Johnson, G.D. Poe, R.Y. Lochhead, C.L. McCormick, The synthesis of
hydrophobically modified water
‐
soluble polyzwitterionic copolymers and
responsiveness to surfactants in aqueous solution, Journal of Macromolecular Science,
Do'stlaringiz bilan baham: |