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The azidated PVC surface was then irradiated using u.v.
Oxidization action and migration of calcium carbonate on PVC surface as major mechanism of surface treatment are confirmed by scanning electron microscope and X-ray photoelectron spectroscope determinations.
Fourier transform infrared (FT-IR) analysis confirms that mechanism of surface modification may be due to oxidization reactions occurred on PVC surface.
SEM shows that compared with common smooth PVC surface, a lotus-like structure with micro- and nano-papillae was obviously observed on the hydrophobic PVC surfaces.
A new simple approach was developed to obtain a super-hydrophobic PVC surface via solvent nonsolvent coating without addition of low-surface-energy compounds.
It was found that considerable reduction in the migration of the plasticizer could be achieved by this technique depending on the extent of azidation of the PVC surface and the irradiation dose.
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Novel bactericidal PVC surfaces were developed.
These polymers were grafted by click chemistry on PVC surfaces bearing azide groups (PVC-N3).
Thermal ALD (T-ALD) and plasma-enhanced ALD (PE-ALD) processes were employed to prepare the Al2O3 thin films on plasticized polyvinyl chloride (PVC) surfaces at a low deposition temperature of 80 °C.
A statistical distribution of the pore size was estimated for the PVC surfaces of each membrane using IMAGER 4.31 software.
When the QRE platinum electrode is used in conjunction with a device without PVC, the surface potential response of the platinum and the gate dielectric mirror each other.
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