Hydroxyapatite formation from cuttlefish bones: kinetics (CROSBI ID 164686)
Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija
Podaci o odgovornosti
Ivanković, Hrvoje ; Tkalčec, Emilija ; Orlić, Sebastijan ; Gallego Ferrer, Gloria ; Schauperl, Zdravko
engleski
Hydroxyapatite formation from cuttlefish bones: kinetics
Highly porous hydroxyapatite (Ca10(PO4)6·(OH)2, HA) was prepared through hydrothermal transformation of aragonitic cuttlefish bones (Sepia officinalis L. Adriatic Sea) in the temperature range from 140 to 220°C for 20 min to 48 h. The phase composition of converted hydroxyapatite was examined by quantitative X-ray diffraction (XRD) using Rietveld structure refinement and Fourier transform infrared spectroscopy (FTIR). Johnson–Mehl–Avrami (JMA) approach was used to follow the kinetics and mechanism of transformation. Diffusion controlled one dimensional growth of HA, predominantly along the a-axis, could be defined. FTIR spectroscopy determined B-type substitutions of CO3 2− groups. The morphology and microstructure of converted HA was examined by scanning electron microscopy. The general architecture of cuttlefish bones was preserved after hydrothermal treatment and the cuttlefish bones retained its form with the same channel size (~80 × 300 μm). The formation of dandelion-like HA spheres with diameter from 3 to 8 μm were observed on the surface of lamellae, which further transformed into various radially oriented nanoplates and nanorods with an average diameter of about 200–300 nm and an average length of about 8–10 μm.
hydroxyapatite; kinetics and mechanism of transformation; dandelion-like microstructure.
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Podaci o izdanju
21 (10)
2010.
2711-2722
objavljeno
0957-4530
10.1007/s10856-010-4115-4
Povezanost rada
Kemijsko inženjerstvo, Temeljne tehničke znanosti