## Abstract A theoretical study of the properties of the linear LiH dimer was undertaken. In this dimer, an unusual type of hydrogen bonding (termed โinverseโ hydrogen bonding by some authors), which involves the hydrogen bonded molecule acting as an electron donor (rather than as a proton donor),
Computational studies on the dimers and the thermal dimerization of norbornadiene
โ Scribed by Yong Wu; Ying Xue; Chan Kyung Kim
- Publisher
- John Wiley and Sons
- Year
- 2008
- Tongue
- English
- Weight
- 434 KB
- Volume
- 29
- Category
- Article
- ISSN
- 0192-8651
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โฆ Synopsis
Abstract
In this study, 14 norbornadiene (NBD) dimers and the thermal dimerization mechanism were studied using the hybrid density functional theory (B3LYP) and the secondโorder multiconfigurational perturbation theory (CASPT2). In the process of dimerization, the biradical stationary points were located using the unrestricted, brokenโspin, symmetry approach. The pathways were divided into eight parts to aid the analysis of their mechanisms. Our results indicated that the process for the formation of the cageโlike heptacyclo[6.6.0.0.2, 60.3, 130.4, 1105, 9.010, 14] tetradecane (HCTD, D14) is highly exothermic (92.15 kcal/mol), indicating that D14 is the most stable NBD dimer. However, the formation of D14 is very difficult to achieve kinetically because of a higher barrier in the thermal dimerization. On the contrary, the formation of exoโcisโexo (D5) is kinetically favorable, but thermodynamically unfavorable at higher temperature. Therefore, the combination of both thermodynamic and kinetic factors indicated that the formation of exoโexo (D9), which resembles the product of the pseudoโDielsโAlder addition, is most likely in the NBD dimerization. ยฉ 2007 Wiley Periodicals, Inc. J Comput Chem, 2008
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