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dc.contributor.authorFarah Hanani, Zulkifli-
dc.contributor.authorFathima, Shahitha-
dc.contributor.authorMashitah, Mohd Yusuff-
dc.contributor.authorNurul Nadiah, Hamidon-
dc.contributor.authorSugandha, Chahalds-
dc.date.accessioned2013-12-20T07:19:28Z-
dc.date.available2013-12-20T07:19:28Z-
dc.date.issued2012-11-20-
dc.identifier.citationp. 709-714en_US
dc.identifier.urihttp://dspace.unimap.edu.my/123456789/30689-
dc.descriptionMalaysian Technical Universities Conference on Engineering and Technology (MUCET) 2012 organised by technical universities under the Malaysian Technical Universities Network (MTUN), 20th - 21st November 2012 at Hotel Seri Malaysia, Kangar, Perlis.en_US
dc.description.abstractThe electrospinning of hydroxyethyl cellulose/poly(vinyl alcohol) (HEC/PVA) was carried out with glutaraldehyde as a cross linker to fabricate water insoluble nanofibers. The concentration of HEC (5wt%) and PVA (15wt%) was prepared and blended in different weight ratios of HEC to PVA (50:50, 40:60 and 70:30) were electrospun to get nanofibers. The microstructure of the obtained nanofibers were analysed by scanning electron microscopy (SEM) and X-ray diffraction (XRD) before and after crosslinking. SEM images showed that there was no swelling or remarkable changes in the surface morphology after treated with glutaraldehyde. XRD analysis illustrated the effect of crosslinking on the crystallinity of the nanofibers. The results showed that these crosslinked HEC/PVA fibers were suitable for variety of applications such as tissue engineering scaffolds, drug delivery and medical prostheses.en_US
dc.language.isoenen_US
dc.publisherMalaysian Technical Universities Network (MTUN)en_US
dc.relation.ispartofseriesProceedings of the Malaysian Technical Universities Conference on Engineering and Technology (MUCET) 2012;-
dc.subjectCrosslinkingen_US
dc.subjectElectrospinningen_US
dc.subjectHydroxyethyl celluloseen_US
dc.subjectNanofibersen_US
dc.subjectPoly(vinyl alcohol)en_US
dc.titleCross-linking effect on electrospun hydroxyethyl cellulose/poly(vinyl alcohol) nanofibrous scaffoldsen_US
dc.typeWorking Paperen_US
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