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المؤلفAbdal-hay, Abdalla
المؤلفHasan, Anwarul
المؤلفKim, Yu-Kyoung
المؤلفLee, Min-Ho
المؤلفHamdy, Abdel Salam
المؤلفKhalil, Khalil Abdelrazek
تاريخ الإتاحة2021-03-31T08:18:07Z
تاريخ النشر2016
اسم المنشورMaterials Science and Engineering C
المصدرScopus
الرقم المعياري الدولي للكتاب9284931
معرّف المصادر الموحدhttp://dx.doi.org/10.1016/j.msec.2015.09.065
معرّف المصادر الموحدhttp://hdl.handle.net/10576/18059
الملخصThis article demonstrates the use of hybrid nanofibers to improve the biodegradation rate and biocompatibility of AM50 magnesium alloy. Biodegradable hybrid membrane fiber layers containing nano-hydroxyapatite (nHA) particles and poly(lactide)(PLA) nanofibers were coated layer-by-layer (LbL) on AM50 coupons using a facile single-step air jet spinning (AJS) approach. The corrosion performance of coated and uncoated coupon samples was investigated by means of electrochemical measurements. The results showed that the AJS 3D membrane fiber layers, particularly the hybrid membrane layers containing a small amount of nHA (3wt.%), induce a higher biocorrosion resistance and effectively decrease the initial degradation rate compared with the neat AM50 coupon samples. The adhesion strength improved highly due to the presence of nHA particles in the AJS layer. Furthermore, the long biodegradation rates of AM50 alloy in Hank's balanced salt solution (HBSS) were significantly controlled by the AJS-coatings. The results showed a higher cytocompatibility for AJS-coatings compared to that for neat Mg alloys. The nanostructured nHA embedded hybrid PLA nanofiber coating can therefore be a suitable coating material for Mg alloy as a potential material for biodegradable metallic orthopedic implants.
اللغةen
الناشرElsevier Ltd
الموضوعMagnesium alloys
Air jet spinning
Nanofibers
Implant biomaterials
Biodegradable coatings
Nano-hydroxyapatite
Biocorrosion
العنوانBiocorrosion behavior of biodegradable nanocomposite fibers coated layer-by-layer on AM50 magnesium implant
النوعArticle
الصفحات1232-1241
رقم المجلد58
dc.accessType Abstract Only


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