Contact Angle Hysteresis:  Study by Dynamic Cycling Contact Angle Measurements and Variable Angle Spectroscopic Ellipsometry on Polyimide

The phenomenon of contact angle hysteresis was studied on smooth films of polyimide, a polymer type used in the microelectronic industry, by dynamic cycling contact angle measurements based on axisymmetric drop shape analysis-profile in combination with variable angle spectroscopic ellipsometry (VAS...

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Veröffentlicht in:Langmuir 2004-08, Vol.20 (16), p.6685-6691
Hauptverfasser: Hennig, A, Eichhorn, K.-J, Staudinger, U, Sahre, K, Rogalli, M, Stamm, M, Neumann, A. W, Grundke, K
Format: Artikel
Sprache:eng
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Zusammenfassung:The phenomenon of contact angle hysteresis was studied on smooth films of polyimide, a polymer type used in the microelectronic industry, by dynamic cycling contact angle measurements based on axisymmetric drop shape analysis-profile in combination with variable angle spectroscopic ellipsometry (VASE). It was found that both advancing and receding contact angles became smaller with increasing the number of cycles and are, therefore, not a property of the dry solid alone. The changes of the wetting behavior during these dynamic cycling contact angle measurements are attributed mainly to swelling and/or liquid retention. To reveal the water-induced changes of the polymer film, the polyimide surface was studied before and after the contact with a water droplet by VASE. Both the experimental ellipsometric spectrum for Δ and that for Ψ as well as the corresponding simulations show characteristic shifts due to the contact with water. The so-called effective medium approximation was applied to recover information about the thickness and effective optical constants of the polymer layer from the ellipsometrically measured values of Δ and Ψ. On the basis of these results, the swelling and retention behavior of the polyimide films in contact with water droplets were discussed.
ISSN:0743-7463
1520-5827
DOI:10.1021/la036411l