To standardize industrial implant production and make comparisons between different experimental results, we have to be able to quantify the crystallinity of hydroxyapatite. Methods of measuring crystallinity ratio were developed for various HA samples before and after plasma spraying. The first ser
Morphological and X-ray diffraction studies of crystalline hydroxyapatite-reinforced polycaprolactone
โ Scribed by Avinash Baji; Shing-Chung Wong; Tianxi Liu; Tingcheng Li; T. S. Srivatsan
- Publisher
- John Wiley and Sons
- Year
- 2007
- Tongue
- English
- Weight
- 543 KB
- Volume
- 81B
- Category
- Article
- ISSN
- 1552-4973
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โฆ Synopsis
Abstract
Morphological and mechanical properties of hydroxyapatite (HAP)โreinforced polycaprolactone (PCL) were studied. The objective was to examine how morphological features alter the bulk mechanical properties in our laboratoryโsynthesized HAPโreinforced PCL. HAP crystals were synthesized by hydrolysis of mixtures of calcium and phosphate salts in the laboratory with wet chemical methods. The properties of the commercially available hydroxyapatite (HAP~1~) are compared with that of laboratoryโsynthesized hydroxyapatite (HAP~2~). The HAP crystals and composition were characterized using Xโray diffraction, scanning electron microscopy, transmission electron microscopy, and Fourier transform infrared spectrometry (FTIR). The HAP~1~ and HAP~2~ crystals were dispersed into polymers to examine the mechanical behavior of bioactive composites, and the interfacial interactions between the polymer and HAP crystals are addressed. The FTIR results confirmed that the two forms of HAP crystals are consistent in terms of the functional chemical groups. The wide angle Xโray diffraction study was performed to determine the crystallinity of the bioactive composites. It was observed that the crystallinty of HAPโfilled PCL steadily increased as the filler concentration increased. Generally, HAP~2~ has a particle size considerably smaller than HAP~1~ and the composite derived had higher modulus than conventional HAPโfilled polymers. This increase in modulus is attributed to better interfacial interaction. Bioresorbability tests performed on HAP particles found that the synthesized HAP had higher resorption rates. It is clear that the mechanical properties are influenced by the particle size and therefore by the processing method used. ยฉ 2006 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 2006
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Study of an amorphous phase in plasma-sprayed hydroxyapatite (HA) coatings is important owing to its unique characteristics and nonnegligible amount of the amorphous phase compared to crystalline HA. However, little is known about the component parts of an amorphous phase. It is known that amorphous