Theoretical Study of the Mechanism and Rate Constant Calculations of the Reaction of Carbon Monoxide with Ethylene
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3. Assessment report on ethylene for developing ambient air quality objectives, http://gov.ab.ca/env/protenf/standards/index.html.Alberta Environ (2003).
4. Production: Growth is the Norm//Chemical and Engineering News, 84, 28 (2006). http://pubs.acs.org/cen/coverstory/84/pdf/8428produ tion.pdf
5. A. Lifshitz, H. Ben-Hamou, J. Phys. Chem., 87, 1782 (1983).
6. J. A. Montgomery, M. J. Frisch, J. W. Ochterski, G.A. Pertersson., J. Chem. Phys., 110, 2822 (1999).
7. E. Henon, F. Bohr, Journal of Molecular Structure (Theochem), 531, 283 (2000).
8. D. G. Truhlar, A. D. Isaacson, B. C. Garrett, Generalized Transition State Theory, Series: Theory of Chemical Reaction Dynamics. CRC Press, Inc., vol. 4, p. 65, (1985).
9. C. Eckart, Phys. Rev. 35, 1303 (1930).
10. Ochterski, J. W.; Petersson, G. A.; Montgomery, J. A., Jr. J Chem Phys, 104, 2598 (1996).
11. Nyden, M. R.; Petersson, G. A. J Chem Phys, 75, 1843 (1981).
12. Petersson, G. A.; Bennett, A.; Tensfeld, T. G.; Al-Laham, M. A.; Shirley, W.; Matzaris, J. J Chem Phys, 89, 2193 (1988).
13. Petersson, G. A.; Al-Laham, M. A. J Chem Phys, 94, 6081 (1991).
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15. Montgomery, J. A., Jr.; Ochterski, J. W.; Petersson, G. A. J Chem Phys, 101, 5900 (1994).
16. Montgomery, J. A., Jr.; Frisch M. J.; Ochterski, J. W.; Petersson, G. A. J Chem Phys, 112, 6532 (2000).
17. O. Mó, M. Elguero Yáñez, J. Chem. Phys. 97, 6628 (1992).
18. K. Raghavachari, G. W. Trucks, J. A. Pople, M. Head-Gordon, Chem. Phys. Lett. 157, 479 (1989).
19. Frisch, M. J. et al. Official Gaussian 09 Literature Citation. Gaussian, Inc.: Pittsburgh PA (2009).
20. http://www.gaussian.com/g_tech/g_ur/m_citation.htm
Publicado
2015-07-01
Como Citar
Silva, W. B. da, & Albernaz, A. F. (2015). Theoretical Study of the Mechanism and Rate Constant Calculations of the Reaction of Carbon Monoxide with Ethylene. Revista Processos Químicos, 9(18), 243-246. https://doi.org/10.19142/rpq.v9i18.311
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