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By Maryann C. Wythers

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A. Peutzfeldt, Europ. J. , 105, 97 (1997). R. L. Bowen, US patent 3,066,112 (1962). R. C. Craig, Dent. Clin. , 25, 219 (1981). R. R. Braga and J. L. Ferracane, Critic Rev. Oral Bio. 15, 176 (2004). R. L. S. patent 3179623 (1965). R. G. Craig and J. M. Power, Restorative Dental Materials, Mosby, USA (2002). R. W. Arcis, A. M. Macipe, M. Toledano, E. Osorio, R. R. Clemente, J. Murtra, M. A. Fanovich and C. D. Pascual, Dent. , 18, 49 (2002). X. Xu and J. O. Burgess, Biomaterials, 24, 2451 (2003). A.

Wen et al. [196] controlled the surface roughness of these electrospun fibres by incorporating SiO2 nano-particles. These nano-fibres are expected to find important applications in composites (particularly dental composites) as well as catalyst support and adsorption. Fong [190] investigated dental polymers, Bis-GMA and TEGDMA with the reinforcing effect of electrospun Nylon 6 nanofibres. The small diameter of nanofibres provide a high surface area to volume ratio, which could enhance the intermolecular hydrogen bonding between the filler of Nylon 6 nanofibres and the matrix of resin polymers.

78, 1469 (1999). Resin-Based Dental Composites 37 [28] M. Taira, A. M. Khan, K. Ohmoto, N. Satou, H. Shintani, K. Wakasa and M. Yamaki, J. Mater. Sci. , 13, 1229 (1994). [29] C. Hansel, G. Leyhausen, U. E. H. Mai and W. Geurtsen, Dent. , 77, 60 (1998). [30] J. Nie and C. N. Bowman, Biomaterials, 23, 1221 (2002). [31] J. E. G. Lovell and C. N. Bowman, Dent. , 17, 221 (2001). [32] F. Goncalves, Y. Kawano, C. Pfeifer, J. W. Stansbury and R. R. Braga, Europ. J. , 117, 442 (2009). [33] J. A. Feilzer and S.

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