Mishra P, Verma K, Bawari D, Viswanathan K S
Department of Chemistry, Indian Institute of Science Education and Research, Sector 81, Mohali, Punjab 140306, India.
J Chem Phys. 2016 Jun 21;144(23):234307. doi: 10.1063/1.4953793.
Borazine is isoelectronic with benzene and is popularly referred to as inorganic benzene. The study of non-covalent interactions with borazine and comparison with its organic counterpart promises to show interesting similarities and differences. The motivation of the present study of the borazine-water interaction, for the first time, stems from such interesting possibilities. Hydrogen-bonded complexes of borazine and water were studied using matrix isolation infrared spectroscopy and quantum chemical calculations. Computations were performed at M06-2X and MP2 levels of theory using 6-311++G(d,p) and aug-cc-pVDZ basis sets. At both the levels of theory, the complex involving an N-H⋯O interaction, where the N-H of borazine serves as the proton donor to the oxygen of water was found to be the global minimum, in contrast to the benzene-water system, which showed an H-π interaction. The experimentally observed infrared spectra of the complexes corroborated well with our computations for the complex corresponding to the global minimum. In addition to the global minimum, our computations also located two local minima on the borazine-water potential energy surface. Of the two local minima, one corresponded to a structure where the water was the proton donor to the nitrogen of borazine, approaching the borazine ring from above the plane of the ring; a structure that resembled the global minimum in the benzene-water H-π complex. The second local minimum corresponded to an interaction of the oxygen of water with the boron of borazine, which can be termed as the boron bond. Clearly the borazine-water system presents a richer landscape than the benzene-water system.
硼嗪与苯等电子,通常被称为无机苯。研究硼嗪的非共价相互作用并与有机类似物进行比较,有望展现出有趣的异同点。本研究首次对硼嗪与水的相互作用展开研究,其动机便源于这些有趣的可能性。利用基质隔离红外光谱法和量子化学计算对硼嗪与水形成的氢键复合物进行了研究。计算在理论水平M06 - 2X和MP2下进行,使用6 - 311++G(d,p)和aug-cc-pVDZ基组。在这两个理论水平下,发现涉及N - H⋯O相互作用(其中硼嗪的N - H作为质子供体给水中的氧)的复合物是全局最小值,这与苯 - 水体系形成H - π相互作用的情况不同。实验观测到的复合物红外光谱与我们对对应全局最小值的复合物的计算结果吻合良好。除了全局最小值外,我们的计算还在硼嗪 - 水势能面上找到了两个局部最小值。在这两个局部最小值中,一个对应于水作为质子供体给硼嗪氮原子的结构,水从硼嗪环平面上方接近硼嗪环;该结构类似于苯 - 水H - π复合物中的全局最小值。第二个局部最小值对应于水的氧与硼嗪的硼之间的相互作用,可称为硼键。显然硼嗪 - 水体系呈现出比苯 - 水体系更丰富的情况。