Nano-hydroxyapatite is anattractive and biocompatible material due to its chemical likeness to
bone and tooth.The nHAp has osteoconductivity and bioactive properties that promote regeneration and adherence to bone tissue,however,lack mechanical properties.Hence,there is an interest in associating this material with others to obtain composite with superior properties.Vertically aligned multi-walled carbon nanotubes (VAMWCNT-O) have outstanding mechanical,electrical,chemical and biocompat-ibility properties,which may boost typical nHAp properties.We presented for the first time the
correlation between nHAp crystals-like and hydrothermal–electrochemical parameters collected during the electrodeposition process on VAMWCNT-O.Also, we show dependence between the nHAp crystals and bath temperature.Based on our results, we proposed and discussed a mechanism of formation of nHAp crystals on VAMWCNT-O electrodes.
Nano-hydroxyapatite is anattractive and biocompatible material due to its chemical likeness tobone and tooth.The nHAp has osteoconductivity and bioactive properties that promote regeneration and adherence to bone tissue,however,lack mechanical properties.Hence,there is an interest in associating this material with others to obtain composite with superior properties.Vertically aligned multi-walled carbon nanotubes (VAMWCNT-O) have outstanding mechanical,electrical,chemical and biocompat-ibility properties,which may boost typical nHAp properties.We presented for the first time thecorrelation between nHAp crystals-like and hydrothermal–electrochemical parameters collected during the electrodeposition process on VAMWCNT-O.Also, we show dependence between the nHAp crystals and bath temperature.Based on our results, we proposed and discussed a mechanism of formation of nHAp crystals on VAMWCNT-O electrodes.
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