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The Modeling of the Apatite Nanocrystals of Bone, Illustrating its Physicochemical Evolution and Surface Reactivity

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dc.contributor.author Sukhodub, L.F.
dc.contributor.author Dyadyura, K.
dc.contributor.author Prokopovich, I.V.
dc.contributor.author Oborskyi, H.O.
dc.date.accessioned 2020-01-13T07:38:35Z
dc.date.available 2020-01-13T07:38:35Z
dc.date.issued 2018
dc.identifier.citation Sukhodub L. F., Dyadyura K., Prokopovich I. V., Oborskyi H. O. (2018) The Modeling of the Apatite Nanocrystals of Bone, Illustrating its Physicochemical Evolution and Surface Reactivity. Applications and Properties : 8th International Conference on Nanomaterials. en
dc.identifier.citation The Modeling of the Apatite Nanocrystals of Bone, Illustrating its Physicochemical Evolution and Surface Reactivity / L. F. Sukhodub, K. Dyadyura, I. V. Prokopovich, H. O. Oborskyi // Applications and Properties : 8th International Conference on Nanomaterials. – 2018. en
dc.identifier.other 978-1-5386-5333-3/18/$31.00
dc.identifier.other DOI: 10.1109/NAP.2018.8915182
dc.identifier.uri http://dspace.opu.ua/jspui/handle/123456789/10099
dc.description.abstract This study intends to present a review of the different types of ceramic-polymeric nanocomposites. Nanocomposites have been shown to be ideal bioactive materials due the many biological interfaces and structures operating at the nanoscale. Polymer – ceramic nanocomposite systems are particularly interesting as they can be closer to bone in terms of its constitution which is mostly an intricate combination of two phases at the nano-level: hydroxyapatite and collagen. The present article has as its main goal to analyze the most recent reported studies based on polymer-ceramic nanocomposites produced for bone replacement and regeneration. The present information about the in vivo and in vitro studie s that have been performed and their contribution for the development of an ideal nanocomposite material to be used in bone. Structural, morphology, micrograph and chemical composition of this nanocrystalline composites were characterized by XRD, AFM, SEM and FTIR, respectively en
dc.language.iso en en
dc.publisher IEEE en
dc.subject Bones, Nanocomposites, Minerals, Polymers, Nanobioscience, Mechanical factors, Nanocrystals, bone, hydroxyapatite, nanocomposites, process of biomineralization, chitosan en
dc.title The Modeling of the Apatite Nanocrystals of Bone, Illustrating its Physicochemical Evolution and Surface Reactivity en
dc.type Article in Scopus en
opu.kafedra Кафедра Металорізальних верстатів, метрології та сертифікації uk
opu.citation.journal Proceedings of the 2018 IEEE 8th International Conference on Nanomaterials: Applications and Properties en
opu.citation.firstpage 01SPN74-1 en
opu.citation.lastpage 01SPN74-7 en
opu.citation.issue NAP 2018, art. no. 8915182 en
opu.staff.id i.v.prokopovich@opu.ua en
opu.staff.id oborsky@opu.ua en


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