Norberg Daniel, Salhi-Benachenhou Nessima
Department of Quantum Chemistry, Uppsala University, Box 518, 751 20 Uppsala, Sweden.
J Comput Chem. 2008 Feb;29(3):392-406. doi: 10.1002/jcc.20797.
The stepwise and concerted pathways for the McLafferty rearrangement of the radical cations of butanal (Bu(+)) and 3-fluorobutanal (3F-Bu(+)) are investigated with density functional theory (DFT) and ab initio methods in conjunction with the 6-311+G(d,p) basis set. A concerted transition structure (TS) for Bu(+), (H), is located with a Gibbs barrier height of 37.7 kcal/mol as computed with CCSD(T)//BHandHLYP. Three pathways for the stepwise rearrangement of Bu(+) have been located, which are all found to involve different complexes. The barrier height for the H(gamma) transfer is found to be 2.2 kcal/mol, while the two most favorable TSs for the C(alpha)-C(beta) cleavage are located 8.9 and 9.2 kcal/mol higher. The energies of the 3F-Bu(+) system have been calculated with the promising hybrid meta-GGA MPWKCIS1K functional of DFT. Interestingly, the fluorine substitution yields a barrier height of only 20.5 kcal/mol for the concerted TS, (3F-H). A smaller computed dipole moment, 12.1 D, for (3F-H) compared with 103.2 D for (H) might explain the stabilization of the substituted TS. The H(gamma) transfer, with a barrier height of 4.9 kcal/mol, is found to be rate-determining for the stepwise McLafferty rearrangement of 3F-Bu(+), in contrast to the unsubstituted case. By inspection of the spin and charge distributions of the stationary points, it is noted that the bond cleavages in the concerted rearrangements are mainly of heterolytic nature, while those in the stepwise channels are found to be homolytic.
采用密度泛函理论(DFT)和从头算方法并结合6 - 311 + G(d,p)基组,研究了丁醛(Bu(+))和3 - 氟丁醛(3F - Bu(+))自由基阳离子的麦克拉弗蒂重排的逐步和协同途径。用CCSD(T)//BHandHLYP计算得出,Bu(+)的协同过渡态结构(TS),即(H),其吉布斯势垒高度为37.7 kcal/mol。已找到Bu(+)逐步重排的三条途径,发现它们都涉及不同的复合物。发现H(γ)转移的势垒高度为2.2 kcal/mol,而C(α)-C(β)裂解的两个最有利的过渡态比其高8.9和9.2 kcal/mol。用有前景的DFT混合元广义梯度近似MPWKCIS1K泛函计算了3F - Bu(+)体系的能量。有趣的是,对于协同过渡态(3F - H),氟取代产生的势垒高度仅为20.5 kcal/mol。与(H)的103.2 D相比,(3F - H)计算得到的偶极矩较小,为12.1 D,这可能解释了取代过渡态的稳定性。与未取代的情况相反,发现对于3F - Bu(+)的逐步麦克拉弗蒂重排,势垒高度为4.9 kcal/mol的H(γ)转移是速率决定步骤。通过检查驻点的自旋和电荷分布,注意到协同重排中的键裂解主要是异裂性质,而逐步通道中的键裂解是均裂性质。