Microstructure of brushite crystals prepared via high internal phase emulsion

Central European Journal of Chemistry - Tập 8 - Trang 202-206 - 2010
Hong N. Lim1, Anuar Kassim1, Nay M. Huang2, Chin H. Chia3
1Chemistry Department, Faculty of Science, University Putra Malaysia, UPM Serdang, Malaysia
2Solid State Physics Research Laboratory, Physics Department, Faculty of Science, University of Malaya, Kuala Lumpur, Malaysia
3School of Applied Physics, Faculty of Science & Technology, Universiti Kebangsaan Malaysia, Bangi, Malaysia

Tóm tắt

For the first time, various microstructures of calcium phosphates were successfully synthesized using a high internal phase emulsion process. The crystals were possessed in the brushite crystalline phase. The morphology of the crystals was influenced by the variables related to the emulsion process route, which consisted of flakes, dendrites and particulates structures.

Tài liệu tham khảo

S.M. Arifuzzaman, S. Rohani, J. Crystal Growth 267, 624 (2004) L.L. Hench, J. Am. Ceram. Soc. 74, 1487 (1991) S. Weiner, H.D. Wagner, Annu. Rev. Mater. Sci. 28, 271 (1998) M. Jarcho, Clin. Orthop. Rel. Res. 157, 259 (1981) M. Jarcho, J.F. Kay, K.I. Gumaer, R.H. Doremus, H.P. Drobeck, J. Bioeng. 1, 79 (1977) S. Singh, P. Bhardwaj, V. Singh, S. Aggarwal, U.K. Mandal, J. Colloid Inter. Sci. 319, 322 (2008) J. Fan, J. Lei, C. Yu, B. Tu, D. Zhao, Mater. Chem. Phys. 103, 489 (2007) Y.J. Wang, C. Lai, K. Wei, S.Q. Tang, Mater. Lett. 59, 1098 (2005) X.D. Kong, X.D. Sun, J.B. Lu, F.Z. Cui, Curr. Appl. Phys. 5, 519 (2005) Y.J. Zhan, C.L. Zheng, Y.K. Liu, G.H. Wang, Mater. Lett. 57, 3265 (2003) J.D. Hopwood, S. Mann, Chem. Mater. 9, 1819 (1997) X. Dai, S. Shivkumar, Mater. Sci. Eng. C 28, 336 (2008) C.S. Liu, W. Gai, S.H. Pan, Z.S. Liu, Biomaterials 24, 2995 (2003) K.L. Yadav, P.W. Brown, J. Biomed. Mater. Res. A 65A, 158 (2003) Y. Wang, S. Zhang, K. Wei, N. Zhao, J. Chen, X. Wang, Mater. Lett. 60, 1484 (2006) Y. Xu, D. Wang, L. Yang, H. Tang, Mater. Charact. 47, 83 (2001) G.K. Lim, J. Wang, S.C. Ng, C.H. Chew, L.M. Gan, Biomaterials 18, 1433 (1997) K. Sonoda, T. Furuzono, D. Walsh, K. Sato, J. Tanaka, Solid State Ionics 151, 321 (2002) H. Yuan, Z. Yang, J.D. de Bruijin, K. de Groot, X. Zhang, Biomaterials 22, 2617 (2001) S.F. Hulbert, J.S. Morrison, J.J. Klawitter, J. Biomed. Mater. Res. A 6, 347 (1972) K.A. Hing, S.M. Best, W. Bonfield, J. Mater. Sci. Mater. Med. 10, 135 (1999) J. Esquena, G.S.R.R.R. Sankar, C. Solans, Langmuir 19, 2983 (2003) C. Solans, J. Esquena, N. Azemar, Curr. Opin. Colloid Interface Sci. 8, 156 (2003) R. Pal, Food Hydrocolloids 20, 997 (2006) B. Niraula, C.K. Tan, K.C. Tham, M. Misran, Colloids Surf. A 251, 117 (2004) N. M. Huang, et al., Mater. Lett. 63, 500 (2009) R. Boistelle, I. Lopez-Velero, J. Crystal Growth 102, 609 (1990) A. Ferreira, C. Oliveira, F. Rocha, J. Crystal Growth 252, 599 (2003) P.N. Kumta, C. Sfeir, D.H. Lee, D. Olton, D.W. Choi, Acta Biomaterialia 1, 65 (2005) M. Bohner, Injury 31, 37 (2000) J. Lu, et al., J. Biomed. Mater. Res. 63, 408 (2002) F. Theiss, et al., Biomaterials 26, 4383 (2005) W. Wu, G.H. Nancollas, Pure Appl. Chem. 70, 1867 (1998) P. Fraysinnet, L. Gineste, P. Conte, J. Fages, N. Rouquet, Biomaterials 19, 971 (1998) L.M. Grover, J.C. Knowles, G.J.P. Fleming, J.E. Barralet, Biomaterials 24, 4133 (2003) G. Penel, N. Leroy, P. Van Landuyt, B. Flautre, P. Hardouin, J. Lemaitre, G. Leroy, Bone 25, 81 (1999) M.D. Lacasse, G.S. Grest, D. Levine, T.G. Mason, D.A. Weitz, Phys. Rev. Lett. 76, 3448 (1996) M. Vallet-Regi, J. M. Gonzalez-Calbet, Prog. Solid State Chem. 32, 1 (2004)