Biomedical Engineering Reference
In-Depth Information
127. de Aza, P. N., Guitian, F., Merlos, A., Lora-Tamayo, E., and de Aza, S. (1996)
Bioceramics — simulated body fluid interfaces: pH and its influence of
hydroxyapatite formation,
, 399-402.
128. Bohner, M., Lemaître, J., and Ring, T. A. (1997) Kinetics of dissolution of
β-tricalcium phosphate,
J. Mater. Sci. Mater. Med.
,
7
, 37-48.
129. Young, R. A. (1974) Implications of atomic substitutions and other
structural details in apatites,
J. Coll. Interf. Sci.
,
190
, 193-203.
130. de Leeuw, N. H. (2010) Computer simulations of structures and
properties of the biomaterial hydroxyapatite,
J. Dent. Res.
,
53
J. Mater. Chem.
,
20
,
5376-5389.
131. Pareek, A., Torrelles, X., Angermund, K., Rius, J., Magdans, U., and Gies,
H. (2008) Structure of interfacial water on fluorapatite (100) surface,
Langmuir
, 2459-2464.
132. Pan, H., Tao, J., Wu, T., and Tang, R. (2007) Molecular simulation of water
behaviors on crystal faces of hydroxyapatite,
,
24
Frontiers of Chemistry in
, 156-163.
133. Zahn, D., and Hochrein, O. (2003) Computational study of interfaces
between hydroxyapatite and water,
China
,
2
Phys. Chem. Chem. Phys.
,
5
, 4004-
4007.
134. Corno, M., Busco, C., Bolis, V., Tosoni, S., and Ugliengo, P. (2009)
Water adsorption on the stoichiometric (001) and (010) surfaces of
hydroxyapatite: a periodic B3LYP study,
, 2188-2198.
135. Pan, H., Tao, J., Yu, X., Fu, L., Zhang, J., Zeng, X., Xu, G., and Tang, R. (2008)
Anisotropic demineralization and oriented assembly of hydroxyapatite
crystals in enamel: smart structures of biominerals,
Langmuir
,
25
J. Phys. Chem. B
,
, 7162-7165.
136. Levich, V. G. (1962)
112
Physicochemical Hydrodynamics
, Prentice Hall,
New York.
137. Wu, L., Forsling, W., and Schindler, P. W. (1991) Surface complexation
of calcium minerals in aqueous solution. 1. Surface protonation at
fluorapatite-water interfaces,
, 178-185.
138. Skartsila, K., and Spanos, N. (2007) Surface characterization of
hydroxyapatite: potentiometric titrations coupled with solubility
measurements,
J. Coll. Interf. Sci.
,
147
, 405-412.
139. Vučinić, D. R., Radulović, D. S., and Deušić, S. D. (2010) Electrokinetic
properties of hydroxyapatite under flotation conditions,
J. Coll. Interf. Sci.
,
308
J. Coll. Interf.
, 239-245.
140. Zhang, J., and Nancollas, G. H. (1992) Kinetics and mechanisms of
octacalcium phosphate dissolution at 37 °C,
Sci.
,
343
J. Phys. Chem.
,
96
, 5478-
5483.
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