Regular article Ab initio calculations find 2,2-disilylcyclopentane-1,3-diyl is a singlet diradical with a high barrier to ring closure*
David A. Hrovat, Anne Skancke, Weston Thatcher Borden
Abstract
David A. Hrovat, Anne Skancke, Weston Thatcher Borden
Abstract
Ab initio calculations on the lowest singlet and triplet states of 2,2-disilylcyclopentane-1,3-diyl find that the singlet lies well below the triplet. The C2 singlet diradical is calculated to be a minimum on the potential energy surface with an enthalpic barrier to ring closure of DH z 298 a 13.5 kcal/mol at the CASPT2/6-31G* level of theory. The energy of the 1,3-divinyl-substituted singlet diradical is calculated to be only 0.8 kcal/mol higher than that of 5,5-disilyl-1,3-divinylbicyclo(2.1.0)pentane at this level of theory, but the transition state for their equili- bration is computed to be 12.8 kcal/mol above the diradical in energy.
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Ab initio calculations on the lowest singlet and triplet states of 2,2-disilylcyclopentane-1,3-diyl find that the singlet lies well below the triplet. The C2 singlet diradical is calculated to be a minimum on the potential energy surface with an enthalpic barrier to ring closure of DH z 298 a 13.5 kcal/mol at the CASPT2/6-31G* level of theory. The energy of the 1,3-divinyl-substituted singlet diradical is calculated to be only 0.8 kcal/mol higher than that of 5,5-disilyl-1,3-divinylbicyclo(2.1.0)pentane at this level of theory, but the transition state for their equili- bration is computed to be 12.8 kcal/mol above the diradical in energy.
Key concepts: Diradical, Singlet state, Ab initio, Singlet fission, Chemistry, Ring (chemistry), Closure (psychology), Triplet state