4.7 Article

Effect of carbonization treatment on the morphology and microstructure of mesoporous bioactive glass/nanocrystalline hydroxyapatite nanocomposite

期刊

JOURNAL OF NON-CRYSTALLINE SOLIDS
卷 389, 期 -, 页码 104-112

出版社

ELSEVIER
DOI: 10.1016/j.jnoncrysol.2014.01.050

关键词

Mesoporous bioactive glasses; Hydroxyapatite; Nanocomposites; Microstructure; Carbonization temperature

资金

  1. National Natural Science Foundation of China [31070867, 51102211, 51273181]
  2. Zhejiang Provincial Natural Science Foundation of China [Y4110169]
  3. Outstanding Postgraduate Dissertation Growth Foundation of Zhejiang Sci-Tech University [2013YBPY05]

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Mesoporous bioactive glass/nanocrystalline hydroxyapatite (MBG-nHA) nanocomposite synthesis was prepared through evaporation-induced self-assembly method followed by in situ carbonization process, with non-ionic block copolymer as mesoporous template and carbon sphere as co-template. Conducting carbonization before calcination provided an effective and simple method of controlling the structural and morphological features of MBG-nHAs. The results show that the MBG-nHA350 nanocomposite with low carbonization temperature possessed a relatively ordered hexagonal structure, high specific surface area, and large pore volume. The increment of carbonization temperature induced the presence of micropores on the surface of the nanocomposite and increased the HA nanoparticles. These findings suggest that the surface area and pore volume of the nanocomposite decrease with increasing carbonization temperature. The structural changes in the nanocomposites were related to the inclusion of HA nanoparticles in the channels through carbonization. The in vitro bioactivity evaluation in the simulated body fluid (SBF) confirms that the MBG-nHA350 sample exhibits fast apatite formation ability, thereby denoting that the proposed method enhances the potential application of MBG-nHAs in bone tissue regeneration and drug delivery. (C) 2014 Elsevier B.V. All rights reserved.

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