Title of article :
Structural, Morphological and Anti-Bacterial Analysis of Nanohydroxyapatite Derived from Biogenic (SHELL) and Chemical Source: Formation of Apatite
Author/Authors :
Kumar, Chimmachandiran Suresh Department of Physics - Thiruvalluvar College of Engineering and Technology - Vandavasi - Tamilnadu, India , Dhanaraj, Kaliyan Department of Physics - Arunai Engineering College - Tiruvannamalai - Tamilnadu, India , Vimalathithan, Ramasamy Mariappan Department of Physics - Salem Sowdeswari College (Govt. Aided) - Salem - Tamilnadu, India , Ilaiyaraja, Perumal School of Advanced Sciences - Vellore Institute of Technology Chennai campus - VIT University - Chennai - Tamilnadu, India , Suresh, Govindhasamy Department of Physics - Aarupadai Veedu Institute of Technology - Vinayaka Mission's Research Foundation - Tamilnadu, India
Abstract :
The Nano Hydroxyapatite (HAp), HAp/PEG and HAp/PVP powders derived from both Gastropod shell
(natural source) and chemical precursor by the precipitation method were characterized through various
characterization techniques such as FT-IR, XRD, SEM-EDX, TEM, Antibacterial activity and SBF analysis. Based
on the structural, chemical, morphological and biological characteristics, HAp/PVP from natural and chemical
precursors have been compared. Calculated structural parameters, crystallinity index, C/P ratio, morphology,
antibacterial activity and SBF analysis of the products show that HAp/PVP-S (derived from a natural source)
exhibits good mechanical property, rod like morphology, good antibacterial activity and apatite formation ability
after 14 days. EDX analysis also shows the presence of carbon and sodium in HAp/PVP-S. Comparative analysis
reveals that characteristics of HAp/PVP-S such as high carbonate content, low crystallite size, poor crystalline
nature, presence of trace metal, non-stoichiometric elemental composition and rod like crystals which are matched
with the characteristics of biological apatite. Thus, the HAp/PVP-S has the ability to form bone apatite.
Keywords :
SBF Analysis , Antibacterial Activity , Comparative Analysis , Precipitation Method , Hydroxyapatite
Journal title :
Iranian Journal of Materials Science and Engineering