-
Zsolt Szekrényes, Bálint Somogyi, Dávid Beke, Gyula Károlyházy, István Balogh, Katalin Kamarás, Adam Gali, “Chemical Transformation of Carboxyl Groups on the Surface of Silicon Carbide Quantum Dots”, J. Phys. Chem. C, 118:34 (2014), 19995
-
Xiaolei Su, Yan Jia, Junbo Wang, Jie Xu, Xinhai He, Chong Fu, Songtao Liu, “Preparation and microwave absorption properties of Fe-doped SiC powder obtained by combustion synthesis”, Ceramics International, 39:4 (2013), 3651
-
Alexander S. Mukasyan, Ya‐Cheng Lin, Alexander S. Rogachev, Dmitry O. Moskovskikh, R. Cutler, “Direct Combustion Synthesis of Silicon Carbide Nanopowder from the Elements”, J. Am. Ceram. Soc., 96:1 (2013), 111
-
Simeon Agathopoulos, “Influence of synthesis process on the dielectric properties of B-doped SiC powders”, Ceramics International, 38:4 (2012), 3309
-
Xiaolei Su, Wancheng Zhou, Jie Xu, Junbo Wang, Xinhai He, Chong Fu, Zhimin Li, H. J. Kleebe, “Preparation and Dielectric Property of Al and N Co‐Doped SiC Powder by Combustion Synthesis”, J. Am. Ceram. Soc., 95:4 (2012), 1388
-
Simeon Agathopoulos, “Combustion synthesis of ultra-fine SiC powders in low pressure N2-atmosphere”, Ceramics International, 38:5 (2012), 4165
-
Małgorzata Sopicka-Lizer, High-Energy Ball Milling, 2010, 167
-
Xiao-Lei Su, Wan-Cheng Zhou, Fa Luo, Zhi-Min Li, Dong-Mei Zhu, “A cost-effective approach to improve dielectric property of SiC powder”, Journal of Alloys and Compounds, 476:1-2 (2009), 644
-
Su Xiaolei, Zhou Wancheng, Li Zhimin, Luo Fa, Du Hongliang, Zhu Dongmei, “Preparation and dielectric properties of B-doped SiC powders by combustion synthesis”, Materials Research Bulletin, 44:4 (2009), 880
-
Zhimin Li, Wancheng Zhou, Xiaolei Su, Fa Luo, Dongmei Zhu, Pengle Liu, “Preparation and Characterization of Aluminum‐Doped Silicon Carbide by Combustion Synthesis”, Journal of the American Ceramic Society, 91:8 (2008), 2607
-
Guanghua Liu, Kun Yang, Jiangtao Li, Kun Yang, Jisheng Du, Xiaoyi Hou, “Combustion Synthesis of Nanosized β-SiC Powder on a Large Scale”, J. Phys. Chem. C, 112:16 (2008), 6285
-
Kun Yang, Yun Yang, Zhi-Ming Lin, Jiang-Tao Li, Ji-Sheng Du, “Mechanical-activation-assisted combustion synthesis of SiC powders with polytetrafluoroethylene as promoter”, Materials Research Bulletin, 42:9 (2007), 1625
-
Г. Л. Хачатрян, С. Л. Харатян, А. Б. Арутюнян, “Активированное горение смеси кремний–углерод в азоте и CBC композиционных керамических порошков Si$_3$N$_4$/SiC и карбида кремния”, Физика горения и взрыва, 42:5 (2006), 56–62
; G. L. Khachatryan, S. L. Kharatyan, A. B. Arutyunyan, “Activated combustion of a silicon–carbon mixture in nitrogen and SHS of Si$_3$N$_4$–SiC composite ceramic powders and silicon carbide”, Combustion, Explosion and Shock Waves, 42:5 (2006), 543–548
-
Roberta Licheri, Roberto Orrù, Giacomo Cao, “Chemically-activated combustion synthesis of TiC–Ti composites”, Materials Science and Engineering: A, 367:1-2 (2004), 185
-
Larisa S. Abovyan, Hayk H. Nersisyan, Suren L. Kharatyan, Roberto Orrù, Giacomo Cao, “The effect of degassing modes on the self-propagating reactions for the SiO2–Al–C system in the presence of reaction promoters”, Ceramics International, 29:2 (2003), 175