Molecular architecture of nanocomposite polytetrafluoroethylene and metal based coatings formed from active gas phase
Problemy fiziki, matematiki i tehniki, no. 1 (2009), pp. 21-26.

Voir la notice de l'article provenant de la source Math-Net.Ru

The peculiarities of the influence on morphology and molecular orientation of polytetrafluoroethylene coatings formed from active gas phase and filled with nanosized metal particles of different nature are observed. Metal doping was established to result in the formation of disperse structures and influence on the character of molecules orientation of polymer matrix. Moreover, the boundary coating-substrate interlayer characterized by macro molecules orientation parallel to the substrate surface has significantly small thickness in comparison with single-component coating. Regularities of the molecular structure transformation in the process of composite layers growth are defined.
Keywords: morphology, molecular structure, composite coating, polytetrafluoroethylene
Mots-clés : metal nanoparticles.
@article{PFMT_2009_1_a2,
     author = {A. A. Rogachev and M. A. Yarmolenko and A. V. Rogachev},
     title = {Molecular architecture of nanocomposite polytetrafluoroethylene and metal based coatings formed from active gas phase},
     journal = {Problemy fiziki, matematiki i tehniki},
     pages = {21--26},
     publisher = {mathdoc},
     number = {1},
     year = {2009},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/PFMT_2009_1_a2/}
}
TY  - JOUR
AU  - A. A. Rogachev
AU  - M. A. Yarmolenko
AU  - A. V. Rogachev
TI  - Molecular architecture of nanocomposite polytetrafluoroethylene and metal based coatings formed from active gas phase
JO  - Problemy fiziki, matematiki i tehniki
PY  - 2009
SP  - 21
EP  - 26
IS  - 1
PB  - mathdoc
UR  - http://geodesic.mathdoc.fr/item/PFMT_2009_1_a2/
LA  - ru
ID  - PFMT_2009_1_a2
ER  - 
%0 Journal Article
%A A. A. Rogachev
%A M. A. Yarmolenko
%A A. V. Rogachev
%T Molecular architecture of nanocomposite polytetrafluoroethylene and metal based coatings formed from active gas phase
%J Problemy fiziki, matematiki i tehniki
%D 2009
%P 21-26
%N 1
%I mathdoc
%U http://geodesic.mathdoc.fr/item/PFMT_2009_1_a2/
%G ru
%F PFMT_2009_1_a2
A. A. Rogachev; M. A. Yarmolenko; A. V. Rogachev. Molecular architecture of nanocomposite polytetrafluoroethylene and metal based coatings formed from active gas phase. Problemy fiziki, matematiki i tehniki, no. 1 (2009), pp. 21-26. http://geodesic.mathdoc.fr/item/PFMT_2009_1_a2/

[1] B. V. Tkachuk, V. M. Kolotyrkin, Thin polymer film deposition from the gas phase, Khim., M., 1977, 321 pp.

[2] H. Yasuda, Plasma polymerization, Academic Press, New York, 1985

[3] G. B. Blanchet et al., “Laser Ablation and the Production of Polymer Films”, Science, 262 (1993), 719–721 | DOI

[4] M. A. Bruk, S. A. Pavlov, Polimerizatsiya na poverkhnosti tverdykh tel, Khimiya, M., 1990, 184 pp.

[5] T. T. Kodas, P. B. Comit, “Role of Mass Transport in Laser-Induced Chemistry”, Ace. Chem. Res., 1990, no. 23, 188–194 | DOI

[6] K. P. Gritsenko, A. M. Krasovsky, “Thin-Film Deposition of Polymers by Vacuum Degradation”, Chem. Rev., 103 (2003), 3607–3649 | DOI

[7] A. A. Rogachev et al., “Mindaugas Andrulevičius Features of Polytetrafluoroethylene Coating Growth on Activated Surfaces from Gas Phase”, Interface controlled organic thin films, Springer Proceedings in Physics, 129, eds. H.-G. Rubahn, H. Sitter, G. Horowitz, K. Al-Shamery, Berlin, 2009, 85–90 | DOI

[8] A. A. Rogachev, “Morphological Features of the First Growth Stepsof Polymeric Coatings from the Active Gas Phase on the Activated Surface”, Russian Journal of Applied Chemistry, 77:2 (2004), 281–284 | DOI

[9] D. G. Castner et al., “Determination of Surface Structure and Orientation of Polymerized Tetrafluoroethylene Films by Near-Edge $X$-ray Absorption Fine Structure, $X$-ray Photoelectron Spectroscopy, and Static Secondary Ion Mass Spectrometry”, Langmuir, 9:2 (1993), 537–542 | DOI

[10] M. Prelipceanu et al., “Study of oriented growth of oligofluorenethiophene films onto aligned vacuum-deposited polytetrafluoroethylene layers”, Materials Science in Semiconductor Processing, 2007, no. 10, 24–35 | DOI

[11] A. A. Rogachev et al., “The structure and molecular orientation of polytetrafluoroethylene coatings deposited from active gas phase”, Applied Surface Science, 255:15 (2009), 6851–6856 | DOI

[12] A. A. Rogachev et al., “Structure and properties of nanocomposite polymer coatings”, Journal of Physics: Conference Series, 2008, no. 100, 082042 | DOI

[13] A. A. Rogachev et al., “Structure and Tribological Properties of Polytetrafluoroethylene Nanocomposite Coatings Formed from Active Gas Phase”, Materials science, 14:1 (2008), 40–43

[14] E. M. Natanson, M. T. Bryk, “Metallopolimery”, Uspekhi Khimii, 41:8 (1972), 280–295

[15] S. R. Carlo, A. J. Wagner, D. H. Fairbrother, “Iron Metalization of Fluorinated Organic Films: A Combined X-ray Photoelectron Spectroscopy and Atomic Force Microscopy Study”, J. Phys. Chem. B, 104 (2000), 6633–6641 | DOI

[16] J. Hoshen, R. Kopelman, “Percolation and cluster distribution”, Phys. Rev. B, 14 (1976), 3488–3498 | DOI

[17] A. A. Rogachev, “Fraktalnyi analiz morfologii poverkhnosti”, Novye matematicheskie metody i kompyuternye tekhnologii v proektirovanii, proizvodstve i nauchnykh issledovaniyakh, Materialy IX resp. nauch. konf. studentov i aspirantov (Gomel, 13–15 marta 2006 g.), eds. D. G. Lin i dr., GGU im. F. Skoriny, Gomel, 2006, 108–109

[18] J. Dechant et al., Ultrarotspektroskopische Untersuchungen an Polymeren, Academie-Verlag, Berlin, 1972

[19] R. E. Moynihan, “The Molecular Structure of Perfluorocarbon Polymers. Infrared Studies on Polytetrafluoroethylene”, J. Am. Chem. Soc., 81:5 (1959), 1045–1050 | DOI

[20] A. A. Rogachev, M. A. Yarmolenko, CO-MAT-TECH-2006 Contributed papers (Trnava, Slovakia, 2006), 1089–1092

[21] G. Masetti et al., “Conformational Order and Disorder in Poly (tetrafluoroethylene) from the Infrared Spectrum”, Macromolecules, 6:5 (1973), 700–707 | DOI

[22] Z. Giuseppe, M. Sacchi, “Dynamics of Polymers as Structurally Disordered Systems. Vibrational Spectrum and Structure of Poly (tetrafluoroethylene)”, Macromolecules, 6:5 (1973), 692–699 | DOI

[23] L. K. Tamm, S. F. Tatulian, “Infrared spectroscopy of proteins and peptides in lipid bilayers”, Quarterly Reviews of Biophysics, 30:4 (1997), 365–429 | DOI

[24] A. F. Runge, S. S. Saavedra, S. B. Mendes, “Combination of polarized TIRF and ATR spectroscopies for determination of the second and fourth order parameters of molecular orientation in thin films and construction of an orientation distribution based on the maximum entropy method”, J. Phys. Chem. B, 110:13, Apr. 6 (2006), 6721–6731 | DOI

[25] A. A. Rogachev, A. V. Rogachev, M. A. Yarmolenko, “Morfologiya i molekulyarnaya struktura nanorazmernykh metallsoderzhaschikh pokrytii PTFE, formiruemykh iz aktivnoi gazovoi fazy”, Materialy, tekhnologii i instrumenty, 11:4 (2006), 51–55