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Structural and Energetic Properties of Haloacetonitrile-BCl3 Complexes: Computations and Matrix-IR Spectroscopy

机译:卤乙腈-BCL3复合物的结构和能量性质:计算和矩阵-RIR光谱

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摘要

The FCH2CN-BCl3 and ClCH2CN-BCl3 complexes were investigated by quantum-chemical computations and low-temperature, matrix-isolation-IR spectroscopy. Theory predicts two stable equilibrium structures, with distinctly different B-N distances, for both complexes. One set of structures, which correspond to the global energy minima, exhibit B-N distances of 1.610 and 1.604 A for FCH2CN-BCl3 and ClCH2CN-BCl3, respectively (via M06-2X/aug-cc-pVTZ). The corresponding binding energies are 5.3 and 6.3 kcal/mol. For the metastable structures, the B-N distances are 2.870 and 2.865 angstrom for FCH2CN-BCl3 and ClCH2CN-BCl3, respectively, and the corresponding binding energies are 3.2 and 3.3 kcal/mol. Also, the barriers between these structures on the B-N distance potentials are 2.5 and 2.8 kcal/mol, respectively, relative to the secondary, long-bond minima. In addition, several IR bands of both FCH2CN-BCl3 and ClCH2CN-BCl3 were observed in nitrogen matrices, but the assigned bands are consistent with M06-2X predictions for the short-bond, minimum-energy structures. None of the observed IR bands could be assigned to the metastable, long-bond structures.
机译:通过量子化学计算和低温矩阵隔离-RI光谱研究FCH2CN-BCL3和CLCH2CN-BCL3配合物。理论预测两个稳定的平衡结构,具有明显不同的B-N距离,适用于两个配合物。对应于全局能量最小值的一组结构,分别表现出1.610和1.604A的B-n距离,分别用于FCH2CN-BCL3和CLCH2CN-BCL3(通过M06-2X / AUG-CC-PVTZ)。相应的结合能为5.3和6.3kcal / mol。对于亚稳结构,对于FCH2CN-BCL3和CLCH2CN-BCL3,B-N距离分别为2.870和2.865埃,并且相应的结合能为3.2和3.3kcal / mol。而且,相对于二级的长键最小值,这些结构与B-N距离电位上的这些结构之间的屏障分别为2.5和2.8kcal / mol。此外,在氮矩阵中观察到若干FCH2CN-BCL3和CLCH2CN-BCL3的IR带,但是分配的带与短键,最小能量结构的M06-2X预测一致。没有观察到的IR带可以分配给亚稳态的长粘合结构。

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