By Anne George
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Tinti, D. S. (1986). J. , 36, 143-147. Mirtchi, A. ; Lemaitre, J. & Munting, E. (1990). Calcium phosphate cements: study of the alfatricalcium phosphate-dicalcium phosphate-calcite cements, Biomaterials, 11: 83-8. Moheno, P. & Pfleiderer, W. (2010). US7662820. Muller-Mai, C. ; Voigt, C. & Gross, U. (1990). Incorporation and degradation of hydroxyapatite implants of different surface roughness and surface structure in bone. Scanning Microsc, 4, 613-22. ; Tanahashi, M. & Ogawa, M. (1996). Differences of bone bonding ability and degradation behaviour in vivo between amorphous 48 Advances in Biomimetics calcium phosphate and highly crystalline hydroxyapatite coating.
Striking water repellence by water striders’ legs. Nature, 432,36 Garcia-Sanz, F. ; Mayor, M. ; Arias, J. ; Leon, B. & Perez-Amor, M. (1997). Hydroxyapatite coatings: a comparative study between plasma-spray and pulsed laser deposition techniques. J. Mater. Sci. Mater. , 8, 861-5. ; Bhaskar, S. ; Cutright, D. ; Brady, J. ; Driskell, T. D. & O'Hara, M. J. (1972). Three biodegradable calcium phosphate slurry implants in bone. J. Oral. , 30, 263-8. Gindl, W. & Keckes, J. (2004). Tensile properties of cellulose acetate butyrate composites reinforced with bacterial cellulose.
Reproduced with permission from Mater. Res. , 2009, 44, 288. Copyright 2009 Elsevier. 20 mol L-1, the flakes consisted of particles were observed (Fig. 18c). When the high concentration of Ba2+ was used, the nucleation of BaCrO4 was fast and the growth was restricted. So the particles were obtained. These results indicate that the morphology of BaCrO4 is sensitive to the experimental conditions. 19). When both P123 and CTAB were used, the rhombus-like structures consisted of particles were observed and porous structures were seen on the surface.
Advances in Biomimetics by Anne George