Computational Study of the Isomerization Reactions of Borirane
Author(s) -
Małgorzata Krasowska,
Holger F. Bettinger
Publication year - 2018
Publication title -
the journal of organic chemistry
Language(s) - English
Resource type - Journals
eISSN - 1520-6904
pISSN - 0022-3263
DOI - 10.1021/acs.joc.7b02715
Subject(s) - chemistry , isomerization , endothermic process , density functional theory , computational chemistry , coupled cluster , ring (chemistry) , transition state , molecule , organic chemistry , catalysis , adsorption
Borirane is isoelectronic to the cyclopropyl cation, but is stable toward electrocyclic ring opening to 2-bora-propa-1,3-diyl A, the boron analogue of the allyl cation. A computational investigation using density functional theory (B3LYP) in combination with highly correlated electronic structure theory methods of the coupled-cluster [CCSD(T)] and multireference configuration interaction (MRCI) type in conjunction with basis sets of up to quadruple-ζ quality reveal that formation of A is endothermic by roughly 15 kcal mol -1 and that A collapses almost without barrier (0.2 kcal mol -1 ) to borirane. The vinylborane isomer B is more stable than borirane and its formation is associated with a barrier of 36-38 kcal mol -1 . Methyl methylideneborane E, only slightly less stable than B, can only be accessed by pathways involving barriers of at least 60 kcal mol -1 .
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