Evaluation of Raw Material Concentration and Stirring Time on the Synthesis of β-TCP/HAp Nanocomposite Oarticles by Deposition Method
Subject Areas :
S. Bagheshahi
1
,
F. Mirjalili
2
,
S.A. Manafi
3
,
M. Aghaee
4
1 - Faculty of Science and Engineering - Imam Khomeini International School, Qazvin, Iran
2 - Department of Material Engineering, Maybod Branch, Islamic Azad University, Maybod, Iran
3 - Department of Material Engineering, Shahrood Branch, Islamic Azad University, Shahrood, Iran
4 - Materials Engineering Department, Islamic Azad University, Science and Research Branch, Tehran, Iran
Received: 2020-06-16
Accepted : 2020-06-16
Published : 2020-06-21
Keywords:
References:
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Hench, J. Am. Ceram. Soc., 74, 1991, 1487.
Zhu, R. Yu, J. Wang, D. Ke, J Alloys and Compounds, 2008, 555.
Lilian, G. Cynthia, Materials Research, 20, 2017, 973.
Albayrak, Materials Characterization, 113, 2016 ,82.
Fidancevska, G. Ruseska, L. Min, A. Boccaccini, Materials Chemistry and Physics, 103, 2007, 95.
Pushpakanth, B. Sreedhar, T. Sastiy, Materials Chemistry and Physics, 107, 2008, 492.
Oktar, Materials Letters, 60, 2006, 2207.
Nath, R. Tripathi, Materials Science and Engineering C, 29, 2009, 97.
Ruksudjarit, Current Applied Physics, 8, 2008, 270.
Earl, D. Wood, S. Milne, Journal of Phys., 26, 2006, 268.
Lee, Y.C. Yoon, J. Ceram. Proc. Res., 8, 2007, 427.
M. Nagit, T. Nishino, Sensors and Actuators, 15, 1988, 145.
_||_
Misions, T. Vaimakis, Ceramics International, 36, 2010, 623.
Thamaraiselvi, S. Rajeswari, Trends in Biomaterials and Artificial Organs, 18, 2004, 9.
Kim, Y. Park, D. Kim, H. Jin, K. Shin, J. Jung, H. Park, S. Yoon, Ceramics International, 38, 2012, 1965.
Boyang, C. Guilherme, Materials, 11, 2018, 129.
Yamada, D. Heymann, J. Bouler, Biomaterials, 18, 1994, 1037.
Bouler, R. Legeros, G. Daculsi, Journal of Biomedical Materials Research, 51, 2000, 680.
Xiaolan, J. Nan, L. Yukun, X. Dayu, Q. Guanzhou, Journal of Rate Earths, 25, 2007, 428.
Andrescu, E. Matijevic, D, Goia, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 29, 2006, 93.
Nery, K. Lunch, W. Hirthe, U. Mueller, Journal of Periodontology, 46, 1975, 328.
Ming, X. Pan, Bioactive Materials, 3, 2018, 1.
Aoki, L. Kato, M. Tabata, J. Dent. Eng., 18, 1977, 86.
Kay, R. Young, A. Posner, Nature, 204, 1964, 1050.
S. Pillai, M. Frasnelli, V. Sglavo, Ceramics International, 44, 2018, 1328.
Heimann, Materials Science of Crystalline Bioceramics, 1, 2002, 23.
Kim, H.J. Lee, Key Engineering Materials, 361, 2007, 155.
Han, H. Song, F. Saito, Materials Chemistry and Physics, 99, 2006, 235.
Li, W. Weng, Acta Biomaterialia, 3, 2007, 251.
Habraken, J. Wolke, Advanced Drug Delivery Reviews, 59, 2007, 234.
Kalita, A. Bhardwaj, Materials Science and Engineering C, 27, 2007, 441.
Myung, H. Geun, Chemistry of Materials, 24, 2012, 903.
Hench, J. Am. Ceram. Soc., 74, 1991, 1487.
Zhu, R. Yu, J. Wang, D. Ke, J Alloys and Compounds, 2008, 555.
Lilian, G. Cynthia, Materials Research, 20, 2017, 973.
Albayrak, Materials Characterization, 113, 2016 ,82.
Fidancevska, G. Ruseska, L. Min, A. Boccaccini, Materials Chemistry and Physics, 103, 2007, 95.
Pushpakanth, B. Sreedhar, T. Sastiy, Materials Chemistry and Physics, 107, 2008, 492.
Oktar, Materials Letters, 60, 2006, 2207.
Nath, R. Tripathi, Materials Science and Engineering C, 29, 2009, 97.
Ruksudjarit, Current Applied Physics, 8, 2008, 270.
Earl, D. Wood, S. Milne, Journal of Phys., 26, 2006, 268.
Lee, Y.C. Yoon, J. Ceram. Proc. Res., 8, 2007, 427.
M. Nagit, T. Nishino, Sensors and Actuators, 15, 1988, 145.