| Literature DB >> 28809294 |
Sumit Pramanik1, Asyikin Sasha Mohd Hanif2, Belinda Pingguan-Murphy3, Noor Azuan Abu Osman4.
Abstract
In this work, uEntities:
Keywords: crystallite; equiaxed; hydroxyapatite; porosity; scaffold; shape
Year: 2012 PMID: 28809294 PMCID: PMC5452110 DOI: 10.3390/ma6010065
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.623
Figure 1Thermal stability of the samples by thermogravimetric analysis (TGA) and derivative of thermogravimetric analysis (DTGA) in air atmosphere.
Figure 2X-ray diffraction (XRD) patterns of as-received bovine bone and heat treated bone at 120, 350, 500, 750 and 900 °C with crystallite dimensions (insets).
Figure 3Crystallite size and crystal strain at different heat treated bovine bones including as-received bone.
Figure 4Scanning electron microscopy (SEM) micrographs and corresponding schematic steps of (A & a) as-received bovine bone and heat treated bone at (B & b) 120, (C & c) 350, (D & d) 500, (E & e) 750 and (F & f) 900 °C.
Bulk density and open porosity of as-received and heat treated bones.
| Heat treatment of sample | Bulk Density ± SD (g/cc) | Open porosity ± SD (%) |
|---|---|---|
| As received | 1.984 ± 0.009 | 2.278 ± 0.766 |
| 120 °C | 2.016 ± 0.053 | 2.309 ± 0.046 |
| 350 °C | 1.507 ± 0.060 | 15.724 ± 2.918 |
| 500 °C | 1.201 ± 0.138 | 33.023 ± 0.453 |
| 750 °C | 1.501 ± 0.002 | 2.039 ± 0.878 |
| 900 °C | 1.353 ± 0.029 | 10.275 ± 1.451 |
Note: SD: Standard deviation