Carbothermal synthesis of β-SiC powders from silicon and SiO2-coated carbon powders
-
Yeon Hwang
, Doh-Hyung Riu , Hong-Jeon Kang , Ju-hyun An , Woo Sub Jung , Dongil Chun und Youngseok Kim
Abstract
β-SiC powders were synthesized via a direct carbothermal reaction between solid silicon and SiO2-coated carbon powders. An SiO2 layer can be coated on carbon powders by appropriately controlling the ratios of 3-aminopropyltriethoxysilane (APTES) and tetraethoxysilane (TEOS). The mixture of silicon and SiO2-coated carbon was reacted at 1 500 °C for 1 h in an Ar atmosphere. The morphologies of the SiO2-coated carbon and the synthesized SiC powders were examined, and the phase evolution in the SiC powders during synthesis was analyzed. β-SiC powders with a particle size of around 200 nm were synthesized under SiO2-coating conditions of 0.2 – 0.6 mL of APTES and 0.8 – 0.4 mL of TEOS for 100 mg of carbon black powders. When no TEOS was used in the coating procedure, the β-SiC powders showed large and irregular shapes, while coating was not possible without the addition of APTES.
References
[1] H.Tanaka: J. Ceram. Soc. Jpn.119 (2011) 218. 10.2109/jcersj2.119.218Suche in Google Scholar
[2] A.Okada: J. Eur. Ceram. Soc.28 (2008) 1097. 10.1016/j.jeurceramsoc.2007.03.015Suche in Google Scholar
[3] P.J.Guichelaar: Acheson Process, in: A.W.Weimer (Ed.), Carbide, Nitride and Boride Materials Synthesis and Processing, Chapman Hall, New York (1997) 115. 10.1007/978-94-009-0071-4_4Suche in Google Scholar
[4] M.Narisawa, M.Shimoda, K.Okamura, M.Sugimoto, T.Seguchi: Bull. Chem. Soc. Jpn.68 (1995) 1098. 10.1246/bcsj.68.1098Suche in Google Scholar
[5] K.J.Kim, S.Lee, J.H.Lee, M-H.Roh, K-Y.Lim, Y-W.Kim: J. Am. Ceram. Soc.92 (2009) 424. 10.1111/j.1551-2916.2008.02897.xSuche in Google Scholar
[6] L.Cerovic, S.K.Milonjic, S.P.Zec: Ceram. Inter.21 (1995) 271. 10.1016/0272-8842(95)99793-BSuche in Google Scholar
[7] Y.Yang, Z.M.Lin, J.T.Li: J. Eur. Ceram. Soc.29 (2009) 175. 10.1016/j.jeurceramsoc.2008.05.035Suche in Google Scholar
[8] R.M.Ren, Z.G.Yang, L.L.Shaw: J. Am. Ceram. Soc.85 (2002) 819. 10.1111/j.1151-2916.2002.tb00178.xSuche in Google Scholar
[9] L.Z.Cao, H.Jiang, H.Song, Z.M.Li, G.Q.Miao: J. Alloys Compd.489 (2010) 562. 10.1016/j.jallcom.2009.09.097Suche in Google Scholar
[10] P.Schaaf, M.Kahle, E.Carpene: Appl. Surf. Sci.247 (2005) 607. 10.1016/j.apsusc.2005.01.128Suche in Google Scholar
[11] T.Ebadzadeh, E.Marzban-Rad: Mater. Charact.60 (2009) 69. 10.1016/j.matchar.2008.06.001Suche in Google Scholar
[12] Z.Károly, I.Mohai, Sz.Klébert, A.Keszler, I.E.Sajó, J.Szépvölgyi: Powder Technol.214 (2011) 300. 10.1016/j.powtec.2011.08.027Suche in Google Scholar
[13] S.-M.Ko, S.-M.Koo, W.-S.Cho, K.-T.Hwnag, J.-H.Kim: Ceram. Int.38 (2012) 1959. 10.1016/j.ceramint.2011.10.028Suche in Google Scholar
[14] K.Li, J.Wei, H.Li, C.Wang, G.Jiao: J. Univ. Sci. & Tech. Beijing15 (2008) 484. 10.1016/S1005-8850(08)60091-2Suche in Google Scholar
[15] G.Kim, G.Cho, D.Lim. S.Park: J. Ceram. Process. Res.11 (2010) 377.Suche in Google Scholar
[16] R.Pampuch, L.Stobierski, J.Lis, M.Raczka: Mater. Res. Bull.22 (1987) 1225. 10.1016/0025-5408(87)90132-2Suche in Google Scholar
[17] M.Zhang, X.Zhang, X.He, L.Chen, Y.Zhang: Mater. Lett.64 (2010) 1383. 10.1016/j.matlet.2009.10.009Suche in Google Scholar
[18] S.Che, A.E.Garcia-Bennett, T.Yokoi, K.Sakamoto, H.Kunieda, O.Terasaki, T.Tatsumi: Nat. Mater.2 (2003) 801. PMid:14634644; 10.1038/nmat1022Suche in Google Scholar
[19] X.-J.Wu, D.Xu: J. Am. Chem. Soc.131 (2009) 2774. PMid:19199444; 10.1021/ja808452rSuche in Google Scholar
[20] H.Tanaka, Y.Kurachi: Ceram. Inter.14 (1998) 109. 10.1016/S0272-8842(88)80006-3Suche in Google Scholar
[21] H.P.Martin, R.Ecke, E.Müller: J. Eur. Ceram. Soc.17 (1998) 1737. 10.1016/S0955-2219(98)00094-6Suche in Google Scholar
[22] I.Barin: Thermochemical Data for Pure Substances, VCH, Weinheim (1989).Suche in Google Scholar
[23] J.Zhang, J.C.Jeong, J.H.Lee, C.W.Won, D.J.Kim, C.O.Kim: Mater. Res. Bull.37 (2002) 319. 10.1016/S0025-5408(01)00770-XSuche in Google Scholar
© 2014, Carl Hanser Verlag, München
Artikel in diesem Heft
- Contents
- Contents
- Original Contributions
- Microstructure and residual stresses of laser remelted surfaces of a hot work tool steel
- Dynamic observation of twin evolution during austenite grain growth in an Fe–C–Mn–Si alloy
- Hot ductility behavior of Incoloy901 superalloy in the cast and wrought conditions
- The influence of aluminium intermediate layer in dissimilar friction welds
- Effect of TiO2 in aluminum matrix on workability behavior of powder metallurgy composites during cold upsetting
- Approach to evaluation of the overall strengthening and toughening effect of continuous fiber-reinforced ceramic matrix composites
- The effect of SiC/Al2O3 particles used during FSP on mechanical properties of AZ91 magnesium alloy
- Studies on salt fog corrosion behavior of friction stir welded AA7075–T651 aluminum alloy
- Evaluation of corrosion performance of two Mn-containing stainless steel alloys
- Carbothermal synthesis of β-SiC powders from silicon and SiO2-coated carbon powders
- Synthesis and application of TiO2 nanotubes in environmental pollutant removal
- Mechanical properties of polyvinyl alcohol sponge under different strain rates
- Short Communications
- Effects of Al2O3 phase composition on AlON powder synthesis via aluminothermic reduction and nitridation
- Atomic group rotation mechanism of {1013} twinning in HCP materials
- Self-propagation high-temperature sintering of the Ti–Al–C-diamond/BN system
- People
- The German Materials Society congratulates its long-time Managing Director Dr. Peter Paul Schepp on the occasion of his 65th birthday
- Dr. Margarethe Hofmann-Amtenbrink on her 65th birthday
- DGM News
- DGM News
Artikel in diesem Heft
- Contents
- Contents
- Original Contributions
- Microstructure and residual stresses of laser remelted surfaces of a hot work tool steel
- Dynamic observation of twin evolution during austenite grain growth in an Fe–C–Mn–Si alloy
- Hot ductility behavior of Incoloy901 superalloy in the cast and wrought conditions
- The influence of aluminium intermediate layer in dissimilar friction welds
- Effect of TiO2 in aluminum matrix on workability behavior of powder metallurgy composites during cold upsetting
- Approach to evaluation of the overall strengthening and toughening effect of continuous fiber-reinforced ceramic matrix composites
- The effect of SiC/Al2O3 particles used during FSP on mechanical properties of AZ91 magnesium alloy
- Studies on salt fog corrosion behavior of friction stir welded AA7075–T651 aluminum alloy
- Evaluation of corrosion performance of two Mn-containing stainless steel alloys
- Carbothermal synthesis of β-SiC powders from silicon and SiO2-coated carbon powders
- Synthesis and application of TiO2 nanotubes in environmental pollutant removal
- Mechanical properties of polyvinyl alcohol sponge under different strain rates
- Short Communications
- Effects of Al2O3 phase composition on AlON powder synthesis via aluminothermic reduction and nitridation
- Atomic group rotation mechanism of {1013} twinning in HCP materials
- Self-propagation high-temperature sintering of the Ti–Al–C-diamond/BN system
- People
- The German Materials Society congratulates its long-time Managing Director Dr. Peter Paul Schepp on the occasion of his 65th birthday
- Dr. Margarethe Hofmann-Amtenbrink on her 65th birthday
- DGM News
- DGM News