Abstract
Application of a low-voltage nonstationary electric arc to trialkyl orthoborates at low medium temperatures (£ 130̊C) leads to boron carbide and carbon as the main products.
References
1.
10.1016/j.mencom.2013.11.008_bib0005
Weimer
Carbide Nitride and Boride Materials Synthesis and Processing,
1997
2.
Suri A.K., Subramanian C., Sonber J.K., Murthy T.S.
International Materials Reviews,
2010
3.
Andrievski R.A.
Russian Chemical Reviews,
2012
4.
Miller S., Toksoy F., Rafaniello W., Haber R.
Mechanical Properties and Performance of Engineering Ceramics and Composites IV,
2012
5.
Pilladi T.R., Ananthasivan K., Anthonysamy S., Ganesan V.
Journal of Materials Science,
2011
6.
Xie S.S., Su L.T., Guo J., Vasylkiv O., Borodianska H., Xi Z., Krishnan G.M., Su H., Tok A.I.
Journal of Nanoscience and Nanotechnology,
2012
7.
Kakiage M., Tahara N., Tominaga Y., Yanagidani S., Yanase I., Kobayashi H.
Key Engineering Materials,
2013
8.
Kovalev I.D., Ponomarev V.I., Vershinnikov V.I., Konovalikhin S.V.
International Journal of Self-Propagating High-Temperature Synthesis,
2012
9.
Berchmans L.J., Mani V., Amalajyothi K.
International Journal of Self-Propagating High-Temperature Synthesis,
2009
10.
Krutskii Y.L., Bannov A.G., Sokolov V.V., Dyukova K.D., Shinkarev V.V., Ukhina A.V., Maksimovskii E.A., Pichugin A.Y., Solov’ev E.A., Krutskaya T.M., Kuvshinov G.G.
Nanotechnologies in Russia,
2013
11.
10.1016/j.mencom.2013.11.008_bib0055
Chang
Appl. Phys. A,
2007
12.
Guan Z., Gutu T., Yang J., Yang Y., Zinn A.A., Li D., Xu T.T.
Journal of Materials Chemistry A,
2012
13.
Karaman M., Sezgi N.A., Doğu T., Özbelge H.Ö.
AICHE Journal,
2006
14.
Berjonneau J., Chollon G., Langlais F.
Journal of the Electrochemical Society,
2006
15.
Harini R.S., Manikandan E., Anthonysamy S., Chandramouli V., Eswaramoorthy D.
AIP Conference Proceedings,
2013
16.
Yanase I., Ogawara R., Kobayashi H.
Materials Letters,
2009
17.
Hadian A.M., Bigdeloo J.A.
Journal of Materials Engineering and Performance,
2007
18.
Zhang Y., Zhong J., Wang H.
Advanced Science Engineering and Medicine,
2012
19.
Shi L., Gu Y., Chen L., Qian Y., Yang Z., Ma J.
Solid State Communications,
2003
20.
Gu Y., Chen L., Qian Y., Zhang W., Ma J.
Journal of the American Ceramic Society,
2004
21.
Ronning C., Schwen D., Eyhusen S., Vetter U., Hofsäss H.
Surface and Coatings Technology,
2002
22.
Todorović-Marković B., Draganić I., Vasiljević-Radović D., Romčević N., Romčević M., Dramićanin M., Marković Z.
Applied Surface Science,
2007
23.
An X.Q., Zhai H.Z., Cao C.B., Zhu H.S.
Key Engineering Materials,
2007
24.
He J.L., Shen Z.Q., Wu E., Liu Z.Y., He L.L., Yu D.L., Guo L.C., Wu Q.H., Luo X.G., Hu Q.K., Li D.C., Yanagisawa O., Tian Y.J.
Journal of Alloys and Compounds,
2007
25.
Lange F.F.
Journal of the European Ceramic Society,
2008
26.
E. K. Starostin, I.E. Bulin and N. S. Pechuro, Khimicheskie reaktsii organicheskikh produktov v elektricheskikh razryadakh (Chemical Reac- tions of Organic Products in Electrical Discharges), Nauka, Moscow, 1966, pp. 189-196.(in Russian).
27.
H. Kroepelin and H. Kopsch, US Patent 2,878,177, 1959 (Chem. Abstr., 1959, 53, 12653b).
28.
Mauri F., Vast N., Pickard C.J.
Physical Review Letters,
2001