October 5, 2000
Journal Article

A Theoretical Determination of the Heats of Formation of Furan, Tetrahydrofuran, THF-2-yl and THF-3-yl

Abstract

Large basis set coupled cluster calculations, with corrections for core/valence, atomic spin-orbit and scalar relativistic effects, have been used to determine the atomization energies of furan (1A1, C4H4O), tetrahydrofuran (1A, C4H8O), and the THF-2-yl (2A, C4H8O) and THF-3-yl (2A, C4H8O) radicals. For furan and tetrahydrofuran, where gas phase experimental data is available, the level of agreement between experiment and theory is good. The 0 K heats of formation for the four systems are: DHf(furan) = -4.6 ? 0.5 (calc.) vs. -5.2 ? 0.2 (expt.); DHf(tetrahydrofuran) = -37.6 ? 0.7 (calc.) vs. -37.6 ? 0.2 (expt.); DHf(THF-2-yl) = 5.1 ? 1.0 (calc.) and DHf(THF-3-yl) = 8.9 ? 1.0 (calc.). At 298 K the comparable values are: DHf(furan) = -7.7 ? 0.5 (calc.) vs. -8.3 ? 0.2 (expt.); DHf(tetrahydrofuran) = -44.0 ? 0.5 (calc.) vs. -44.0 ? 0.2 (expt.); DHf(THF-2-yl) = -0.5 ? 1.0 (calc.) and DHf(THF-3-yl) = 3.6 ? 1.0 (calc.). The principal limitation on the accuracy of the composite coupled cluster approach followed in this work is the high cost of large basis set calculations on chemical systems that lack exploitable elements of symmetry. Three parameterized methods, G2, G3 and CBS-Q, were also found to be in good agreement with experiment.

Revised: January 31, 2001 | Published: October 5, 2000

Citation

Feller D.F., and J.A. Franz. 2000. A Theoretical Determination of the Heats of Formation of Furan, Tetrahydrofuran, THF-2-yl and THF-3-yl. Journal of Physical Chemistry A 104, no. 39:9017-9025. PNNL-SA-33208.