T. Suzuki et T. Okuhara, Direct evidence of intramolecular rearrangement in skeletal isomerization of n-butane over bifunctional catalysts, CATAL LETT, 72(1-2), 2001, pp. 111-113
Mechanisms of skeletal isomerization of n-butane over bifunctional catalyst
s, Pt-Cs2.5H0.5PW12O40 and Pt-sulfated ZrO2, as well as the corresponding s
olid acids were studied using 1,4-C-13(2)-n-butane. The isotopic distributi
ons of the reactant and product were analyzed with field ionization mass sp
ectrometry, by which the parent peak patterns were obtained. It was found t
hat 1,4-C-13(2)-n-butane was selectively isomerized to C-13(2)-isobutane ov
er these catalysts in the presence of H-2 at 423-523 K, while the correspon
ding solid acids gave isobutane with binomial distributions of C-13. These
results clearly demonstrate that the skeletal isomerization of n-butane pro
ceeded mainly via a monomolecular path with intramolecular rearrangement on
both the bifunctional catalysts, while it occurred through a bimolecular p
ath with intermolecular rearrangement on the solid acids. This difference i
n reaction mechanism is reflected on that in the selectivity to isobutane.