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Images at 900× magnification revealed partially damaged fiber surfaces.
The monomers may even cover up the fiber surfaces with non-water-absorbable materials.
It must be mentioned here that the nitrogen plasma treatments have not introduced new nitrogen functionality onto surfaces; but instead, have cleaned fiber surfaces of contaminants and successfully introducing C / N functionality into fiber surfaces.
After pre-oxidation, the AgNPs on the fiber surfaces corroded to AgO or AgCl under exposure to air [13].
Heat treatment also creates pores on fiber surfaces from the removal of water molecules produced during polycondensation.
Microscopic investigation of the fiber surfaces was used to visually evaluate the mechanical reliability.
An organic polar solvent with high adsorptive capacity to MITC was applied on the fiber surfaces.
The SEM images showed that uniform anatase TiO2 thin films were coated on fiber surfaces.
Direct observations of drop movements on fiber surfaces are not well documented.
The chemical treatment caused intense delignification and morphological changes on the sugar cane fiber surfaces.
In general very homogeneous and continuous coated carbon fiber surfaces were obtained.
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