Chemistry Reference
In-Depth Information
2. Sanditov, D. S., & Bartenev, G. M. (1982) . Physical Properties of Disordered Structures .
Novosibisrk, Nauka, 256 p.
3. Bartenev, G. M., & Frenkel, S. Ya. (1990) . Physics of Polymers . Leningrad, Khimiya,
432 p.
4. Kozlov, G. V., & Novikov, V. U. (2001) . The Cluster Model of Polymers Amorphous
State . Uspekhi Fizicheskikh Nauk, 171(7), 717-764.
5. Kozlov, G. V., & Zaikov, G. E. (2004) . Structure of the Polymer Amorphous State .
Utrecht, Boston, Brill Academic Publishers, 465 p.
6. Novikov, V. U., Kozlov, G. V., & Yundunov, V. V. (2002) . The Fractal Aspect of Molecu-
lar Mobility in Polymer Composites . Materialovedenie, 4, 4-9.
7. Kozlov, G. V., Temiraev, K. B., Shetov, R. A., & Mikitaev, A. K. (1999) . A Structural
and Molecular Characteristics Influence on Molecular Mobility in Diblock - Copolymers
Oligoformal 2,2- di -(4- oxyphenyl )- propane - oligosulfone Phenolphtaleine . Materialove-
denie, 2 , 34-39.
8. Vilgis, T. A. (1988) . Flory Theory of Polymeric Fractals Intersection , Saturation and
condensation . Physica A, 153(2), 341-354.
9. Alexander, S., & Orbach, R. (1982) . Density of States on Fractals : “ Fractons ”. J . Phys .
Lett . (Paris), 43(17) , L625-L631.
10. Kozlov, G. V., Temiraev, K. B., Shustov, G. B., & Mashukov, N. I. (2002) . Modeling
of Solid State Polymer Properties at the Stage of Synthesis : Fractal Analysis . J. Appl.
Polymer Sci., 85(6), 1137-1140.
11. Kozlov, G. V., Dolbin, I. V., & Zaikov, G. E. (2005) . Fractal Physical Chemistry of Poly-
mer Solutions . In: Chemical and Biological Kinetics. New Horizons.1. Chemical Ki-
netics. Ed. Burlakova, E. B., Shilov, A. E., Varfolomeev, S. D., Zaikov, G. E. Leiden,
Boston, Brill Academic Publishers, 448-483.
12. Kozlov, G. V., Dolbin, I. V., & Zaikov, G. E. (2006) . Fractal Physical Chemistry of Poly-
mer Solutions . In: Focus on Natural and Synthetic Polymer Science. Vasile, C., Zaikov,
G. E., Ed. New York, Nova Science Publishers Inc., 131-175.
13. Kozlov, G. V., Temiraev, K. B., & Sozaev, V. A. (1999) . The Estimation of Macromo-
lecular Coil Fractal Dimension in Diluted Solution by Viscous Characteristics . Zhurnal
Fizicheskoi Khimii, 73(4), 766-768.
14. Kozlov, G. V., & Dolbin, I. V. (2001) . Express - Method of Estimation of Biopolymers in
Solution Macromolecular Coils Fractal Dimension . Biofizika, 46(2), 216-219.
15. Kozlov, G. V., Dolbin, I. V., Mashukov, N. I., Burmistr, M. V., & Korenyako, V. A.
(2001) . The Prediction of Macromolecular Coils in Diluted Solutions Fractal Dimension ,
based on Two - Dimensional Solubility Parameter Model . Voprosy Khimii i Khimicheskoi
Tekhnologii, 6 , 71-77.
16. Kozlov, G. V., Dolbin, I. V., & Zaikov, G. E. (2002) . Rapid Method of Estimating the
Fractal Dimension of Macromolecular coils of Biopolymers in Solution . In: Perspectives
on Chemical and Biochemical Physics. Ed. Zaikov, G. E. New York, Nova Science Pub-
lishers Inc., 217-223.
17. Kozlov, G. V., Beloshenko, V. A., Varyukhin, V. N., & Lipatov, Yu. S. (1999) . Applica-
tion of Cluster Model for the Description of Epoxy Polymer Structure and Properties .
Polymer, 40(4), 1045-1051.
18. Budtov, V. P. (1992) . Physical Chemistry of Polymer Solutions . Sankt-Peterburg, Khi-
miya, 384 p.
Search WWH ::




Custom Search