Publication | Closed Access
Structure-Property Relationships of Silicone Biofouling-Release Coatings: Effect of Silicone Network Architecture on Pseudobarnacle Attachment Strengths
93
Citations
14
References
2003
Year
Crosslink DensityEngineeringMechanical EngineeringBiomedical EngineeringSoft MatterSilicon On InsulatorAttachment StrengthMaterials ScienceMaterials EngineeringSilicone Network ArchitectureSurface ModificationFiller LoadingSurface TreatmentMulti-functional CoatingSilicone Biofouling-release CoatingsAdhesive MaterialSurface ScienceApplied PhysicsPseudobarnacle Attachment StrengthsStructural Adhesive
Model silicone foul-release coatings with controlled molecular architecture were evaluated to determine the effect of compositional variables such as filler loading and crosslink density on pseudobarnacle attachment strength. Pseudobarnacle adhesion values correlated with filler loadings in both condensation and hydrosilylation-cured silicones. Variation of crosslink density of hydrosilylation-cured silicones had an insignificant effect on attachment strength. X-ray photoelectron spectroscopy (XPS) indicated that the mode of failure upon detachment of the pseudobarnacle was dependent upon the crosslink density; samples with high crosslink density failed cohesively within the silicone.
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