The effect of surface relaxation on the N2 dissociation rate on stepped Ru: A Transition State Theory Study

van Harrevelt R, Honkala K, Norskov JK, Manthe U (2006)
Journal of Chemical Physics 124(2): 026102.

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Zeitschriftenaufsatz | Veröffentlicht | Englisch
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Journal of Chemical Physics
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026102
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van Harrevelt R, Honkala K, Norskov JK, Manthe U. The effect of surface relaxation on the N2 dissociation rate on stepped Ru: A Transition State Theory Study. Journal of Chemical Physics. 2006;124(2):026102.
van Harrevelt, R., Honkala, K., Norskov, J. K., & Manthe, U. (2006). The effect of surface relaxation on the N2 dissociation rate on stepped Ru: A Transition State Theory Study. Journal of Chemical Physics, 124(2), 026102. doi:10.1063/.1.2150827
van Harrevelt, R., Honkala, K., Norskov, J. K., and Manthe, U. (2006). The effect of surface relaxation on the N2 dissociation rate on stepped Ru: A Transition State Theory Study. Journal of Chemical Physics 124, 026102.
van Harrevelt, R., et al., 2006. The effect of surface relaxation on the N2 dissociation rate on stepped Ru: A Transition State Theory Study. Journal of Chemical Physics, 124(2), p 026102.
R. van Harrevelt, et al., “The effect of surface relaxation on the N2 dissociation rate on stepped Ru: A Transition State Theory Study”, Journal of Chemical Physics, vol. 124, 2006, pp. 026102.
van Harrevelt, R., Honkala, K., Norskov, J.K., Manthe, U.: The effect of surface relaxation on the N2 dissociation rate on stepped Ru: A Transition State Theory Study. Journal of Chemical Physics. 124, 026102 (2006).
van Harrevelt, R., Honkala, K., Norskov, J. K., and Manthe, Uwe. “The effect of surface relaxation on the N2 dissociation rate on stepped Ru: A Transition State Theory Study”. Journal of Chemical Physics 124.2 (2006): 026102.

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The reaction rate for dissociative adsorption of N2 on stepped Ru(0001): six-dimensional quantum calculations.
van Harrevelt R, Honkala K, Norskov JK, Manthe U., J Chem Phys 122(23), 2005
PMID: 16008468

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Romm, J Chem Phys 112(), 2000

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Wigner, Z. Phys. Chem. Abt. B 19(), 1932

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