首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >B-N distance potential of CH3CN-BF3 revisited: Resolving the experiment-theory structure discrepancy and modeling the effects of low-dielectric environments
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B-N distance potential of CH3CN-BF3 revisited: Resolving the experiment-theory structure discrepancy and modeling the effects of low-dielectric environments

机译:重新探讨CH3CN-BF3的B-N距离电势:解决实验理论结构差异并模拟低介电环境的影响

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We have re-examined the B-N distance potential of CH3CN-BF3 using MP2, DFT, and high-accuracy multicoefficient methods (MCG3 and MC-QCISD). In addition, we have solved a 1-D Schrodinger equation for nuclear motion along the B-N stretching coordinate, thereby obtaining vibrational energy levels, wave functions, and vibrationally averaged B-N distances. For the gas-phase, MCG3//MP2/aug-cc-pVTZ potential, we find an average B-N distance of 1.95 A, which is 0.13 A longer than the corresponding equilibrium value. In turn, this provides solid evidence that the long-standing discrepancy between the experimental (R(B-N) = 2.01 A) and theoretical (R(B-N) = 1.8 A or R(B-N) = 2.2-2.3 A) distances may be genuine, stemming from large amplitude vibrational motion in the B-N stretching coordinate. Furthermore, we have examined the effects of low-dielectric media (epsilon = 1.1-5.0) on the structure of CH3CN-BF3 by calculating solvation free energies (PCM/B97-2/aug-cc-pVTZ) and adding them to the gas-phase, MCG3 potential. These calculations demonstrate that the inner region of the potential is stabilized to a greater extent by these media, and correspondingly, the equilibrium and average B-N distances decrease with increasing dielectric constant. We find that the crystallographic structural result (R(B-N) = 1.63 A) is nearly reproduced with a dielectric constant of only 5.0, and also predict significant structural changes for epsilon values of 1.1-1.5, consistent with results from matrix-isolation-IR experiments.
机译:我们已经使用MP2,DFT和高精度多系数方法(MCG3和MC-QCISD)重新检查了CH3CN-BF3的B-N距离潜力。此外,我们已经解决了沿B-N拉伸坐标进行核运动的一维Schrodinger方程,从而获得了振动能级,波函数和振动平均B-N距离。对于气相MCG3 // MP2 / aug-cc-pVTZ电势,我们发现平均B-N距离为1.95 A,比相应的平衡值长0.13A。反过来,这提供了有力的证据,表明实验距离(R(BN)= 2.01 A)和理论距离(R(BN)= 1.8 A或R(BN)= 2.2-2.3 A)之间的长期差异可能是真实的是由BN拉伸坐标中的大振幅振动引起的。此外,我们通过计算溶剂化自由能(PCM / B97-2 / aug-cc-pVTZ)并将其添加到气体中,研究了低介电介质(ε= 1.1-5.0)对CH3CN-BF3结构的影响相,MCG3电位。这些计算表明,通过这些介质,电势的内部区域在更大程度上得到了稳定,并且相应地,平衡和平均B-N距离随着介电常数的增加而减小。我们发现晶体学结构结果(R(BN)= 1.63 A)几乎以介电常数5.0再现,并且还预测了1.1-1.5ε值的显着结构变化,这与基质-隔离-IR结果一致实验。

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