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@proceedings{1131874, author = {Homola, Tomáš and Prysiazhnyi, Vadym and Stupavská, Monika}, booktitle = {5th International Conference of Asian Socienty for Precision Engineering and Nanotechnology}, keywords = {Nano-modification; Surface treatment; Diffuse plasma; XPS}, language = {eng}, title = {Nano-modification of surfaces using low-cost ambient air diffuse plasma}, year = {2013} }
TY - CONF ID - 1131874 AU - Homola, Tomáš - Prysiazhnyi, Vadym - Stupavská, Monika PY - 2013 TI - Nano-modification of surfaces using low-cost ambient air diffuse plasma KW - Nano-modification KW - Surface treatment KW - Diffuse plasma KW - XPS N2 - . The results indicate that plasma treatment governs the treated surfaces by polar hydrophilic oxygen-based groups and reduces the amount of carbon contaminants. These processes led to higher surface energy and therefore to higher adhesion between applied coatings and plasma treated substrate. Since the DCSBD plasma may operate in various atmospheric conditions, from low-cost ambient air up to various combinations of different carrier gasses (N2, Ar, He) mixed with monomers (plasma enhanced CVD); the DCSBD treatment may be used to achieve various chemistry of . The results indicate that plasma treatment governs the treated surfaces by polar hydrophilic oxygen-based groups and reduces the amount of carbon contaminants. These processes led to higher surface energy and therefore to higher adhesion between applied coatings and plasma treated substrate. Since the DCSBD plasma may operate in various atmospheric conditions, from low-cost ambient air up to various combinations of different carrier gasses (N2, Ar, He) mixed with monomers (plasma enhanced CVD); the DCSBD treatment may be used to achieve various chemistry of treated surfaces. ER -
HOMOLA, Tomáš, Vadym PRYSIAZHNYI a Monika STUPAVSKÁ. Nano-modification of surfaces using low-cost ambient air diffuse plasma. In \textit{5th International Conference of Asian Socienty for Precision Engineering and Nanotechnology}. 2013.
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