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Resorption Rate Tunable Bioceramic: Si, Zn-Modified Tricalcium Phosphate

机译:吸收率可调谐生物陶瓷:si,Zn改性的磷酸三钙

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This dissertation is organized in an alternate format. Several manuscripts which have already been published or are to be submitted for publication have been included as separate chapters. Chapter 1 is a general introduction which describes the dissertation organization and introduces the human bone and ceramic materials as bone substitute. Chapter 2 is the background and literature review on dissolution behavior of calcium phosphate, and discussion of motivation for this research. Chapter 3 is a manuscript entitled 'Si,Zn-modified tricalcium phosphate: a phase composition and crystal structure study', which was published in 'Key Engineering Materials'. Chapter 4 gives more crystal structure details by neutron powder diffraction, which identifies the position for Si and Zn substitution and explains the stabilization mechanism of the structure. A manuscript entitled 'Crystal structure analysis of Si, Zn-modified Tricalcium phosphate by Neutron Powder Diffraction' will be submitted to Biomaterials. Chapter 5 is a manuscript, entitled 'Dissolution behavior and cytotoxicity test of Si, Zn-modified tricalcium phosphate', which is to be submitted to Biomaterials . This paper discusses the additives effect on the dissolution behavior of TCP, and cytotoxicity test result is also included. Chapter 6 is the study of hydrolysis process of (alpha)-tricalcium phosphate in the simulated body fluid, and the phase development during drying process is discussed. A manuscript entitled 'Hydrolysis of (alpha)-tricalcium phosphate in simulated body fluid and phase transformation during drying process' is to be submitted to Biomaterials. Ozan Ugurlu is included as co-authors in these two papers due to his TEM contributions. Appendix A is the general introduction of the materials synthesis, crystal structure and preliminary dissolution result. A manuscript entitled 'Resorption rate tunable bioceramic: Si and Zn-modified tricalcium phosphate' was published in Ceramic Engineering and Science Proceedings (the 29th International Conference on Advanced Ceramics and Composites - Advances in Bioceramics and Biocomposites).

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