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dc.contributor.authorAbdal-Hay, A
dc.description.abstractIn this communication, colloidal silver (Ag) nanostructures were synthesized and deposited directly onto electrospun nylon 6 (N6) fibers without using surface modifier in the form of an ultrathin conformal coating layer via a hydrothermal treatment. The morphological, structural, and thermal properties of the Ag/N6 nanocomposite membranes were analyzed by field-emission scanning electron microscopy (FESEM), X-ray diffraction, X-ray photoelectron spectroscopy, and differential scanning calorimetry (DSC). FESEM imaging showed that the Ag coating on individual N6 nanofibers was continuous, uniform, and compact. A DSC study of the nanocomposites illustrated a strong interfacial adhesion of the Ag layer with N6 nanofiber surfaces via strong hydrogen bonds. A possible mechanism for hydrogen bond formation during the hydrothermal process was proposed. Further, it was found that the transition of the meta-stable ?-form into the thermodynamically more stable ?-form of N6 structure was achieved; therefore, the hydrothermal process did not cause chain degradation. © 2014 Springer Science+Business Media New York.
dc.sourceJournal of Sol-Gel Science and Technology
dc.subjectPolymer-matrix composites
dc.subjectSilver NPs
dc.subjectThermal properties
dc.titleFabrication and characterization of silver nanostructures conformal coating layer onto electrospun N6 nanofibers with improved physical properties
dc.ucuenca.embargoend2022-01-01 0:00
dc.ucuenca.afiliacionabdal-hay, a., department of bionano system engineering, college of engineering, chonbuk national university, jeonju 561-756, south korea, department of computer science, faculty of engineering, universidad de cuenca, cuenca 01.01.168, ecuador, department of engineering materials and mechanical design, faculty of engineering, south valley university, qena, egypt
dc.ucuenca.correspondenciaAbdal-Hay, A.; Department of Bionano System Engineering, College of Engineering, Chonbuk National University, Jeonju 561-756, South Korea; email:
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