Biomorphic Ceramics Based on Biological Structures

Article Preview

Abstract:

Biomorphic ceramics is a novel inorganic materials with hierarchical structures derived from natural biological structures. In this paper, the properties of biomorphic materials are described. The preparation technologies of converting biological structures into biomorphic ceramics are summarized. At last the application and prospects of the ceramics in this field also are analyzed.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 356-360)

Pages:

451-454

Citation:

Online since:

October 2011

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2012 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] H. Sieber, C. Hoffmann, A. Kaindl, P. Greil: Adv. Eng. Mater. 2 (2000), p.105.

Google Scholar

[2] H.Sieber: Mater. Sci. Eng. A 412(2005), p.43.

Google Scholar

[3] P. Greil: J. Eur. Ceram. Soc. 21(2001), p.105.

Google Scholar

[4] J.M. Qian, J.P. Wang, G.J. Qiao, Z.H. Jin: J. Eur. Ceram. Soc. 24(2004), p.3251.

Google Scholar

[5] Q. Wang, G.Q. Jin, D.H. Wang, X.Y. Guo: Mater. Sci. Eng. A 459(2007), p.1.

Google Scholar

[6] C.R. Rambo, J. Cao, O. Rusina, H. Sieber: Carbon 43 (2005), p.1174.

Google Scholar

[7] C.R. Rambo, J. Cao, H. Sieber: Mater. Chem. Phys. 87 (2004), P. 345.

Google Scholar

[8] A. Zampieri, S. Kullmann, T. Selvam, J. Bauer, W. Schwieger, H. Sieber, T. Fey, P. Greil: Microporous Mesoporous Mater. 90(2006), p.162.

DOI: 10.1016/j.micromeso.2005.10.049

Google Scholar

[9] M. Patel, B.K. Padhi: J. Mater. Sci. 25(1990), p.1335.

Google Scholar

[10] S.R. Hall, H. Bolger, S. Mann: Chem. Commum. 2003, P. 2784.

Google Scholar

[11] Q.Wang, D.H. Wang, G.Q. Jin, Y.Y. Wang, X.Y. Guo: Particuology 7(2009), p.199.

Google Scholar

[12] B.T. Su, K. Wang, N. Dong, H.M. Mu, Z.Q. Lei, Y.C. Tong, J. Bai: J. Mater. Proc. Tech. 209(2009), p.4088.

Google Scholar

[13] D.A. Streitwieser, N. Popovska, N.H. Gerhard: J. Eur. Ceram. Soc. 6(2006), P. 2381.

Google Scholar

[14] X.Q. Xie, T. X. Fan, S.B. He, D. Zhang, T. Sakata, H. Mori, T. Okabe: Mater. Sci. Eng. A, 342(2003), p.287.

Google Scholar

[15] J.M. Qian, Z.H. Jin, J.P. Wang: Mater. Sci. Eng. A: Struct. 368(2004), p.71.

Google Scholar

[16] C.R. Rambo, N. Travitzky, Zimmermarm K, P. Greil: Mater. Lett. 59(2005), p.1028.

Google Scholar

[17] E. Vogli, H. Sieber, P. Greil: J. Eur. Ceram. Soc. 22(2002), p.2663.

Google Scholar

[18] J.M. Qian, J.P. Wang, Z.H. Jin: Mater. Chem. Phys. 82(2003), p.648.

Google Scholar

[19] C.R. Rambo, H. Sieber: Adv. Mater. 17(2005), p.1088.

Google Scholar

[20] M. Luo, J.Q. Gao, X. Zhang, J.F. Yang, G.Y. Hou, D.O. Yang, Z.H. Jin: Mater. Lett. 61(2007), p.186.

Google Scholar

[21] T. Ota, M. Imaeda, H. Takase, M. Kobayashi, N. Kinoshita, T. Hirashita, H. Miyazaki, Y. Hikichi: J. Am. Ceram. Soc. 83(2000), p.1521.

DOI: 10.1111/j.1151-2916.2000.tb01421.x

Google Scholar

[22] J.M. Qian, Y.H. Kang, Z.L. Wei, W. Zhang, Mater. Sci. Eng. C 29(2009), p.1361.

Google Scholar

[23] P. Gonzalez, J. Serra, S. Liste, S. Chiussi, B. Leon, M. Perez-Amora, J. Martinez-Fernandeza, A. R. Arellano-Lopeza, F. M. Varela-Feria: Biomaterials 24(2003), p.4827.

Google Scholar

[24] C.R. Rambo, F.A. Muller, L. Muller, H. Sieber, I. Hofmann, P. Greil: Mater. Sci. Eng. C 26(2006), p.92.

Google Scholar

[25] Q. Wang, W.Z. Sun, G.Q. Jin, Y.Y. Wang, X.Y. Guo: Appl. Catal. B 79 (2008), p.307.

Google Scholar

[26] J.M. Qian, J.P. Wang, Z.H. Jin: Mater. Sci. Eng. A 371(2004), p.229.

Google Scholar