Phillips James A, Danforth Samuel J, Hora Nicholas J, Lanska John R, Waller Anna W
Department of Chemistry, University of Wisconsin-Eau Claire , Eau Claire, Wisconsin 54702, United States.
J Phys Chem A. 2017 Dec 7;121(48):9252-9261. doi: 10.1021/acs.jpca.7b09715. Epub 2017 Nov 21.
The FCHCN-BCl and ClCHCN-BCl 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 Å for FCHCN-BCl and ClCHCN-BCl, 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 Å for FCHCN-BCl and ClCHCN-BCl, 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 FCHCN-BCl and ClCHCN-BCl 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.
通过量子化学计算以及低温基质隔离红外光谱对FCHCN - BCl和ClCHCN - BCl配合物进行了研究。理论预测这两种配合物均有两种稳定的平衡结构,其B - N距离明显不同。对于这两种配合物,一组对应全局能量最小值的结构,通过M06 - 2X/aug - cc - pVTZ计算得出,FCHCN - BCl和ClCHCN - BCl的B - N距离分别为1.610 Å和1.604 Å。相应的结合能分别为5.3 kcal/mol和6.3 kcal/mol。对于亚稳结构,FCHCN - BCl和ClCHCN - BCl的B - N距离分别为2.870 Å和2.865 Å,相应的结合能分别为3.2 kcal/mol和3.3 kcal/mol。此外,相对于二级长键最小值,这些结构在B - N距离势面上的势垒分别为2.5 kcal/mol和2.8 kcal/mol。另外,在氮气基质中观察到了FCHCN - BCl和ClCHCN - BCl的几个红外谱带,但所归属的谱带与短键、最低能量结构的M06 - 2X预测结果一致。未观察到的红外谱带都不能归属为亚稳的长键结构。