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A.L. Volynskii, N.F. Bakeev (1984)
Vysokodispersnoe orientirovannoe sostoyanie polimerov
A.N. D’yakonov, P.M. Zavlin (1991)
Polimery v kinofotomaterialakh
(1972)
Rentgenografi ya polimerov (X-ray Diffraction Analysis of Polymers), Leningrad: Khimiya
(2010)
Modifi cation of Polyethylene Terephthalate Films under the Action of Accelerated Electrons
P. Carey (1982)
Biochemical Applications of Raman and Resonance Raman Spectroscopies
Richard Jones (1997)
Polymer interfaces and the molecular basis of adhesionCurrent Opinion in Solid State & Materials Science, 2
K. Tanabe (1970)
Solid acids and bases
(1984)
Vysokodispersnoe orientirovannoe sostoyanie polimerov (Finely Dispersed Oriented State of Polymers)
I. Vasiljeva, S. Mjakin, A. Makarov, A. Krasovsky, A. Varlamov (2006)
Electron beam induced modification of poly(ethylene terephthalate) filmsApplied Surface Science, 252
田部 浩三 (1970)
Solid acids and bases : their catalytic properties
(1991)
Polimery v kinofotomaterialakh (Polymers in Motion Picture and Photographic Materials)
K. Tanabe (1990)
New Solid Acids and Bases: Their Catalytic Properties
Regular trends in variation of the functional group composition, surface energy, and amorphous-crystalline structure of oriented polyethylene terephthalate films modified by irradiation with accelerated electrons to the absorbed dose in the range 25–300 kGy were studied by the methods of surface tension, indicator dye adsorption, and X-ray diffraction. The possibility of preparing gelatin emulsion layers exhibiting high adhesion strength was examined.
Russian Journal of Applied Chemistry – Springer Journals
Published: Jun 15, 2012
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