Название |
Modeling of diamond−like film formation. Part I: Synthesis from CH3*–radicals |
Библиографический список |
1. Gurbuz, Y. Diamond semiconductor technology for RF device applications / Y. Gurbuz, O. Esame, I. Tekin // Solid−State Electronics. − 2005. − N 49. − R. 1055—1070. 2. Yang, W. B. Growth of nanocrystalline diamond protective coatings on quartz glass / W. B. Yang, F. X. Lu, Z. X. Caoa // J. Appl. Phys. − 2002. − V. 91, N 12. − R. 10068—10073. 3. Casserly, T. Corrosion and wear properties of diamond−like carbon films deposited using a novel PACVD interior coating method / T. Casserly, B. Boardman, K. Boinapally // Sub−One Technology. − 2002. − V. 11. − P. 1441—1446. 4. Xintian, E. L. Diamond coating in accelerator structure / E. L. Xintian // The eighth workshop on advanced accelerator concepts. − 1999. − N 472. − R. 676—685. 5. Michel, M. D. Fracture toughness, hardness and elastic modulus of hydrogenated amorphous carbon films deposited by chemical vapor deposition / M. D. Michel, L. V. Muhlen, C. A. Achete // Thin Solid Films. − 2006. − N 496. − P. 481—488. 6. Tamulevisiene, A. Diamond like carbon film as potential antireflective coating for silicon solar cells / A. Tamuleviciene, S. Meskinis, V. Kopustinskas // Mater. Sci. − 2010. − V. 16, N 2. − P. 1659—1676. 7. Sinel'nikov, B. M. Modelirovanie protsessov obrazovaniya amorfnykh i kristallicheskikh plenok ugleroda / B. M. Sinel'nikov, V. A. Tarala // Izv. vuzov. Materialy elektron. tekhniki. − 2010. − № 1. − S. 32—40. 8. Alfonsoy, D. Structure of diamond (100) stepped surfaces from ab initio calculations / D. Alfonsoy, D. Draboldz, S. Ulloaz // J. Phys.: Condens. Matter. − 1996. − V. 8. − R. 641—647. 9. Butler, J. E. A mechanism for crystal twinning in the growth of diamond by chemical vapour deposition / J. E. Butler, I. Oleynik // Phil. Trans. Royal Soc. A. − 2008. − N 366. − R. 295—311. 10. Zarudil, I. Atomistic structure of monocrystalline silicon in surface nano−modification / I. Zarudil, W. C. D. Cheong, J. Zou, H. C. Zhang // Nanotechnology. − 2004. − V. 15. − R. 104—107. 11. Starke, U. SiC surface reconstruction: relevancy of atomic structure for growth technology / U. Starke, J. Bernhardt, J. Schardt // Surf. Rev. Lett. − P. 1—9. Preprint (accepted 29 july, 1999). 12. Williams, O. A. Comparison of the growth and properties of ultrananocrystalline diamond and nanocrystalline diamond / O. A. Williams, M. Daenena, J. D’Haen // Diamond and Related Mater. − 2006. − V. 15, Iss. 4—8. − R. 654—658. 13. Fan, Z. Synthesis of nanocrystalline diamond films / Z. Fan, Z. Yu−feng, G. A. Qiao−Jun // Chin. Phys. Lett. − 2000. − V. 17, N 5. − P. 376. 14. Barbosa, D. C. Growth and characterization of diamond micro and nanocrystals obtained using different methane concentration in argon−rich gas mixture / D. C. Barbosa, P. R. P. Barreto, V. J. Trava−Airoldi // Diamond and Related Mater. − 2010. − V. 19. − P. 768. 15. Awadesh, K. Effect of substrate roughness on growth of diamond by hot filament CVD / K. Awadesh, S. R. Binu, L. N. Satapathy // Bull. Mater. Sci. − 2010. − V. 33, N 3. − R. 251—255. 16. Akatsuka, F. Rapid growth of diamond films by arc discharge plasma CVD / F. Akatsuka, Y. Hirose // Sci. and Technol. of New Diamond. − Tokyo (Japan), 1990. − R. 125—128. 17. Zolotukhin, A. A. Obrazovanie nanouglerodnykh plenochnykh materialov v gazorazryadnoy plazme / A. A. Zolotukhin, A. N. Obraztsov, A. O. Ustinov. // ZhETF. − 2003. − T. 124, № 6. − S. 1291—1297. 18. Kel'tsev, N. V Osnovy adsorbtsionnoy tekhniki / N. V. Kel'tsev − M. : Khimiya, 1984. − 592 s. |