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We present a simple one-pot crystallization method, inspired by biological conditions, for the synthesis of hydroxyapatite (Ca 5 (PO 4 ) 3 OH) nanocrystals. The reaction proceeds via NH 3 vapor diffusion into a CaCl 2 −NaH 2 PO 4 mixed solution that is free of any organic additives. The advantage of relying on acidic calcium-phosphate precursors here is, first, that the reaction can be performed at room temperature within a short time and without direct pH control and, second, that it does not produce any secondary phases or byproduct. Furthermore, the addition of NaHCO 3 to the salt solution or the introduction of (NH 4 ) 2 CO 3 instead of NH 3 lead, respectively, to the precipitation of B- or A-type carbonate-apatite phases according to the FT-IR data. Multinuclear solid state NMR studies and especially 13 C CP experiments allow an in-depth characterization showing the presence of A/B substitutions in carbonated samples as well and indicate a close similarity to deproteinated bovine compact bone. A precipitation mechanism accounting for the precipitation of mainly A- or B-type carbonated apatite under the respective experimental conditions is proposed.
Nassif et al. (Tue,) studied this question.