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Titlebook: Surface Modification of Polymeric Biomaterials; Buddy D. Ratner,David G. Castner Book 1997 Springer Science+Business Media New York 1997 P

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Surface Modification of Polymers for Biomedical Applications: Chemical, Biological, and Surface Analodification of biomaterials is straightforward: retain the key physical properties while modifying only the outermost surface to influence biointeraction. If surface modification is properly effected, the bulk mechanical properties and functionality of the medical device will be unchanged, but the b
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Deposition of Fluorocarbon Films by Remote RF Glow Dischargesmass spectrometry (SIMS), near edge X-ray absorption fine structure (NEXAFS), and atomic force microscopy (AFM).. XPS is used to determine the type and amount of elements present (e.g., % F) and the bonding environment of those elements (e.g., CF. groups). Static SIMS generates a mass spectrum of th
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Plasma Copolymerization of Tetrafluoroethylene and Chlorotrifluoroethylene bonds by ≈ 25−30 kcal/mol. Apparently only three other plasma copolymerization studies have been reported involving CTFE as one of the monomers: copolymerization with benzene. and copolymerization with trifluoromethanesulfonic acid. or perfluoroallylphosphonic acid..
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XPS Analyses of Plasma-Treated Silicone Rubbery a thin cross-linked, sometimes water washable, silica-like surface layer was produced by plasma treatment, but there is no consensus about the nature of the chemical groups produced at the outermost surface. The surface hydrophilicity created by plasma treatment is often lost over time .. This so-
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