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Acta Chimica Sinica ›› 2005, Vol. 63 ›› Issue (7): 587-591. Previous Articles Next Articles
Original Articles
杜竹玮*,郝娟玲,李浩然
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DU Zhu-Wei*, HAO Juan-Ling, LI Hao-Ran
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Fabrication of biomimetic laminated composite by mimicking the cyclical matrix control process to form the highly structured Mollusca nacre was presented in this paper. (PDAC/PSS)n self-assembled multilayers were built-up through alternative adsorption of polycation and polyanion to a substrate as matrices and their chemical structure was characterized by UV-vis absorption spectra. And then the deposition of CaCO3 took place on the multilayers by dipping them into a supersaturated CaCO3 solution. The crystals regulated by (PDAC/PSS)15PDAC exhibited hexahedral shape and had a size of about 30~40 μm after 10 h deposition. Hexagonal CaCO3 platelet crystals could be observed on (PDAC/PSS)15 with a relative small size of 10~20 μm, which is very similar to the crystals existing in natural nacre. Therefore, CaCO3 crystals with remarkable morphology similarity to natural biomineralization products were obtained in the presence of artificial polyanion. However, X-ray diffraction results indicated that crystal lattice of both the samples was different from any kind of natural nacre. Consequently, it might be supposed that electrostatic effect is one of the key factors in morphology control while the crystal lattice was determined by other factors. Furthermore, end surface SEM image of (PDAC/PSS)15-CaCO3 composite elucidated that alternation of multilayer growth and deposition of inorganic crystals coupled with morphology regulation could form laminated material.
Key words: self-assembled multilayers, calcium carbonate, biomimetic biomineralization, nacre
DU Zhu-Wei*, HAO Juan-Ling, LI Hao-Ran. Control of CaCO3 Crystal Growth on PDAC/PSS Self-Assembled Multilayers[J]. Acta Chimica Sinica, 2005, 63(7): 587-591.
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