Processes of association of nitrogen-containing (meth) acrylic monomers in aqueous solutions were examined. The effect of monomer association on the processes of homo- and copolymerisation of the given compounds was shown.
Get full access to this article
View all access options for this article.
References
1.
EgorovV.V., and ZubovV.P.Uspekhi Khimii, 56, No. 12, 1987, pp. 2076–2097.
2.
EgorovV.V.Vys. Soed., A33, No. 8, 1991, pp. 1587–1608.
3.
GromovV.F.Uspekhi Khimii, 63, No. 6, 1994, pp. 530–541.
4.
GromovV.F., and KhomikovskiiP.M.Uspekhi Khimii, 48, No. 11, 1979, pp. 1943–1967.
5.
BuneE.V.Vys. Soed., A31, No. 7, 1989, pp. 1347–1361.
6.
AbramovaL.I.Polyacrylamide, ed. by KurenkovV.F.Khimiya, Moscow, 1992, 192 pp.
7.
LisovtsevV.V.The Chemical Industry: Acrylates and Polyvinyl Chloride.NIITEKhIM, Moscow, 1984, pp. 1–20.
8.
AskarovM.A.The Polymerisation of Aminoalkyl Acrylates.Fan, Tashkent, 1977, 176 pp.
9.
KabanovV.A., and TopchievD.A.The Polymerisation of Ionising Monomers.Nauka, Moscow, 1975, 179 pp.
10.
KesslerYu.M., and ZaitsevA.L.Solvophobic Effects. Theory, Experiment, Practice.Khimiya, Moscow, 1989, 312 pp.
11.
ShibalovichV.G.Plast. Massy, No. 3, 2000, pp. 25–27.
12.
ArutyunyanR.S.Arm. Khim. Zhurn., 41, No. 6, 1988, pp. 323–327.
13.
SivokhinA.P.Influence of the association of nitrogen-containing (meth)acrylic monomers on their radical (co)polymerisation in aqueous solutions. Cand. Chem. Sci. Thesis, Nizhnii Novgorod, 2008, 131 pp.
14.
KazantsevO.A., and ShirshinK.V.Polymer, 45, No. 15, 2004, pp. 5021–5029.
15.
ShirshinK.V.Zhurn. Prikl. Khimii, 77, No. 10, 2004, pp. 1684–1688.
16.
ShirshinK.V.Trudy Nizhegor. Gos. Tekhn. Univers., 45, 2004, pp. 21–23.
17.
KazantsevO.A.Zhurn. Prikl. Khimii, 77, No. 2, 2004, pp. 306–309.
18.
ShirshinK.V.Zhurn. Prikl. Khimii, 80, No. 8, 2007, pp. 1365–1369.
19.
ChapiroA., and Perec-SpritzerL.Eur. Polym. J., 11, 1975, pp. 59–69.
20.
ArutyunyanR.S.Zhurn. Fiz. Khimii, 76, No. 5, 2002, pp. 846–850.
21.
YastremskiiP.S.Zhurn. Fiz. Khimii, 62, No. 3, 1988, pp. 779–781.
22.
PascalP.Macromolecules, 26, No. 17, 1993, pp. 4572–4576.
23.
GanachaudF.Macromolecules, 33, No. 23, 2000, pp. 8589–8596.
24.
BushuevYu.G.Structural properties of liquids with different types of intermolecular interaction according to computer modelling data. Doct. Chem. Sci. Thesis, Ivanovo, 2001, 345 pp.
25.
KorolevG.V.Izv. VUZ Khimiya i Khim. Tekhnolog., 45, No. 2, 2002, pp. 33–38.
26.
KorolevG.V.Uspekhi Khimii, 72, No. 3, 2003, pp. 222–244.
27.
KorolevG.V.Vys. Soed., A45, No. 6, 2003, pp. 883–890.
28.
LacikI.Macromol. Chem. Phys., 205, 2004, pp. 1080–1087.
29.
LacikI.Macromolecules, 36, No. 25, 2003, pp. 9355–9363.
30.
SeabrookS.A.J. Polym. Sci. A. Polym. Chem., 43, 2005, pp. 1357–1368.
31.
KurenkovV.F., and SafinA.G.Zhurn. Prikl. Khimii, 71, No. 1, 1998, pp. 136–140.
32.
KurenkovV.F.Zhurn. Prikl. Khimii, 71, No. 10, 1998, pp. 1704–1708.
33.
LoginovaN.N.Vys. Soed., B11, No. 9, 1969, pp. 643–645.
34.
BudanovaYu.E.Zhurn. Prikl. Khimii, 74, No. 7, 2001, pp. 1182–1185.
35.
KabanovV.A.Dokl. Akad. Nauk SSSR, 168, No. 6, 1966, pp. 1350–1353.
36.
MielkeJ., and RingsdorfH.Makromol. Chem., 142, 1971, pp. 319–324.
37.
MartinV.Makromol. Chem., 176, 1975, pp. 2029–2039.
38.
MartinV.Makromol. Chem., 177, 1976, pp. 89–92.
39.
KurlyankinaV.I.Dokl. Ross. Akad. Sci., 341, No. 3, 1995, pp. 358–363.
40.
EfimovaD. Yu.Zhurn. Prikl. Khimii, 72, No. 11, 1999, pp. 1888–1892.
41.
KurlyankinaV.I.Zhurn. Obshchei Khimii, 69, No. 1, 1999, pp. 97–100.
42.
EfimovaD. Yu.Zhurn. Prikl. Khimii, 73, No. 5, 2000, pp. 815–819.
43.
KurlyankinaV.I.SU 648565. Byull. Izobret., No. 7, 1979, p. 89.
44.
KazantsevO.A.Zhurn. Prikl. Khimii, 76, No. 7, 2003, pp. 1145–1149.
45.
KazantsevO.A.Izv. VUZ Khimiya i Khim. Tekhnolog., 44, No. 1, 2001, pp. 62–65.
46.
KazantsevO.A.Vys. Soed., A45, No. 4, 2003, pp. 572–580.
47.
KazantsevO.A.Zhurn. Prikl. Khimii, 75, No. 3, 2002, pp. 476–480.
48.
GromovV.F.Vys. Soed., A37, No. 11, 1995, pp. 1818–1822.
49.
MyagchenkovV.A., and FrenkelS.Ya.Compositional Inhomogeneity of Copolymers.Khimiya, Leningrad, 1988, 248 pp.
50.
KurenkovV.F., and UtikeevaA.R.Vys. Soed., A42, No. 4, 2000, pp. 587–593.
51.
GromovV.F.Vys. Soed., 35, No. 1, 1993, pp. 7–12.
52.
BarabanovaA.I.Vys. Soed., A36, No. 6, 1994, pp. 901–907.
53.
AbramovaL.I.Zhurn. Prikl. Khimii, 69, No. 9, 1996, pp. 1572–1574.
54.
BerkutovE.A.Polymers and Copolymers of Styrenesulphonic Acid.Nauka, Alma-Ata, 1989, 192 pp.
55.
KurenkovV.F.Zhurn. Prikl. Khimii, 75, No. 4, 2002, pp. 655–658.
56.
KurenkovV.F.Zhurn. Prikl. Khimii, 74, No. 3, 2001, pp. 494–498.
57.
KurenkovV.F.Zhurn. Prikl. Khimii, 74, No. 5, 2001, pp. 789–792.
58.
KurenkovV.F.Zhurn. Prikl. Khimii, 75, No. 10, 2002, pp. 1707–1711.
59.
McCormickC.L., and SalazarL.C.Polym. Mater. Sci. Eng., 57, 1987, pp. 859–861.
60.
KurenkovV.F.Zhurn. Prikl. Khimii, 78, No. 2, 2005, pp. 301–305.
61.
SivokhinA.P.Zhurn. Prikl. Khimii, 80, No. 8, 2007, pp. 1355–1360.
62.
HarwoodH.J.Makromol. Chem., Macromol. Symp., 10/11, 1987, pp. 331–354.
63.
SemchikovYu.D., and SmirnovaL.A.Vys. Soed., 41, No. 4, 1999, pp. 734–748.
64.
KhokhlovA.R.Polym. Sci. Part A: Polym. Sci., 42, 2004, pp. 5340–5353.