PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Influence of Gelation Temperature on the Properties of Sol-Gel-Derived Calcium Hydroxyapatite Ceramics

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
An aqueous sol-gel chemistry synthesis route has been developed to prepare calcium hydroxyapatite (Ca10(PO4)6(OH)2, CHA) samples at different gelation temperatures. In the sol-gel processes, an aqueous solution of tartaric acid as complexing agent was used. The phase transformations, composition and micro-structural properties of the polycrystalline samples were studied by thermogravimetric analysis (TG), differential thermal analysis (DTA), energy-dispersive spectrometry (EDS), Fourier transform infrared spectroscopy (FTIR), X-ray powder diffraction analysis (XRD) and scanning electron microscopy (SEM). It was clearly demonstrated that temperature of initial stage of the preparation of CHA is a crucial parameter to obtain monophasic calcium hydroxy apatite powders with desired morphological properties.
Rocznik
Strony
47--55
Opis fizyczny
Bibliogr. 40 poz., rys.
Twórcy
autor
autor
  • 1Department of General and Inorganic Chemistry, Vilnius University, Naugarduko 24, LT-03225 Vilnius, Lithuania Tel.: +370-5-2193110; Fax: +370-5-2330987, aivaras.kareiva@chf.vu.lt
Bibliografia
  • 1.   Vallet-Regi M., J. Chem. Soc. Dalton Trans., 2, 97 (2001).
  • 2. Kokubo T., Kim H.-M. and Kawashita M., Biomater., 24, 2161 (2003).
  • 3.   Josse S., Faucheux C., Soueidan A., Grimandi G., Massiot D., Alonso B., Jamvier R, Laib S., Gauthier O.,Daculsi G., Guicheux J., Bujoli B. and Bouler J.-M.,Adv. Mater., 16, 1423 (2004).
  • 4. Shirkhanzadeh M., J. Mater Sci.: Mater. Med., 16, 37 (2005).
  • 5.   Watson K.E., Tenhuisen K.S. and Brown P.W., J. Mater. Sci.: Mater. Med., 10, 205 (1999).
  • 6.   Tas A.C., J. Am. Ceram. Soc., 84, 295 (2001).
  • 7.   Chu T.-M.G., Halloran J. W., Hollister S.J. and Feinberg S.E., J. Mater. Sci.: Mater. Med., 12,471 (2001).
  • 8.   Manso-Silvan M., Langlet M., Jimenez C., Fernandez M. and Martinez-Duart J.M., J. Eur. Ceram. Soc.,23, 243 (2003).
  • 9. Kikuchi M., Koyama Y., Yamada T., Imamura Y., Okada T., Shirahama N., Akita K., Takakuda K. and Tanaka J., Biomater., 25, 5979 (2004).
  • 10. Guo L. and Li H., Surf. Coat. Technol., 185, 268 (2004).
  • 11. Uchida M., Oyane A., Kim H.-M., Kokubo T. and Ito A., Adv. Mater., 16,1071 (2004).
  • 12.  Jokanovic V. and Uskokovic D., Mater. Transact., 46, 228 (2005).
  • 13.  Choi A.H. and Ben-Nissan B., Nanomed., 2, 51 (2007).
  • 14.  Tenhuisen K.S. and Brown P.W., J. Mater. Sci.: Mater. Med., 5, 291 (1994).
  • 15.  Kim S.B., Kim Y.J., Yoon T.L., Park S.A., Cho I.H., Kim EJ., Kim LA. and Shin J-W., Biomater., 25, 5715(2004).
  • 16.  Tas A.C. and Aldinger F., J. Mater. Sci.: Mater. Med., 16, 167 (2005).
  • 17.  Lopez-Macipe A., Gomez-Morales J. and Rodriguez-Clemente R., Adv. Mater., 10, 49 (1998).
  • 18.  Bigi A., Panzavolta S. and Rubini K., Chem. Mater., 16, 3740 (2004).
  • 19.  Kawata M., Uchida H., Itatani K., Okada L, Koda S. and Aizawa M., J. Mater. Sci.: Mater. Med., 15,817 (2004).
  • 20.  Kim H.-W., Koh Y.-H., Kong Y.-M., Kang J.-G. and Kim H.-E., J. Mater. Sci.: Mater. Med., 15, 1129 (2004).
  • 21.  Iijima M. and Moradian-Oldak J., Biomater., 26, 1595 (2005).
  • 22.  Jillavenkatesa A. and Condrate Sr. R.A., J. Mater. Sci., 33, 4111 (1998).
  • 23.  Liu D.M., Troczynski T. and Tseng W.J., Biomater., 22, 1721 (2001).
  • 24.  Hsieh M.F., Perng L.H., Chin T.S. and Perng H.G., Biomater., 22, 2601 (2001).
  • 25.  Tkalcec E., Sauer M., Nonninger R. and Schmidt H., J. Mater. Sci., 36, 5253 (2001).
  • 26. Zreiaat H., Roest R., Valenzuela S., Milev A. and Ben-Nissan B., Key Eng. Mater, 284-286,541(2005).
  • 27. Fujishiro Y., Uchida S. and Sato T., Bioceram., 12, 141 (1999).
  • 28.  Bigi A., Boanini E. and Rubini K., J. Solid State Chem., 177, 3092 (2004).
  • 29.  Liu J., Li K., Wang H., Zhu M. and Yan H., Chem. Phys. Lett., 396, 429 (2004).
  • 30.  Yarma H.K. and Babu S.S., Ceram. Int., 31, 109 (2005).
  • 31.  Brinker C. J. and Scherrer G. W., Sol-Gel Science: The Physics and Chemistry of Sol-Gel Processing, Academic Press, San Diego, 1990.
  • 32.  Cushing B.L., Kolesnichenko V.L. and O'Connor C.J., Chem. Rev, 104, 3893 (2004).
  • 33.  Zalga A., Beganskiene A. and Kareiva A., Polish J. Chem., 81, 1547 (2007).
  • 34. Mackenzie J.D. and Bescher E.P., Acc. Chem. Res., 40, 810 (2007).
  • 35. Katelnikovas A. and Kareiva A., Mater. Lett., 62, 1655 (2008).
  • 36. Bogdanoviciene L, Beganskiene A., Tonsuaadu K., Glaser J., Meyer H.-J. and Kareiva A., Mater. Res. Bull., 41, 1754 (2006).
  • 37. Goodhew PJ. and Humphreys F.J., Electron Microscopy and Analysis, Taylor and Francis, London, 1988.
  • 38.  Peleckis G., Tonsuaadu K., Baubonyte T. and Kareiva A., J. Non-Cryst. Solids, 311, 250 (2002).
  • 39.  Katelnikovas A., Barkauskas J., Ivanauskas F., Beganskiene A. and Kareiva A., J. Sol-Gel Sci. Techn.,41, 193 (2007).
  • 40.  Schrader B., Infrared an d Raman Spectroscopy: Methods and Applications, VCH, Weinheim, 1995.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ6-0025-0042
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.