Inorganic Chemistry Group, Department of Chemistry, St. Petersburg State University, University Pr. 26, Old Peterhof, 198504, Russia.
Inorg Chem. 2010 Nov 15;49(22):10357-69. doi: 10.1021/ic101081k. Epub 2010 Oct 21.
Donor-acceptor complexes of borazine (BZ) and its substituted derivatives with Lewis acids (A = MCl(3), MBr(3); M = B, Al, Ga) and Lewis bases (D = NH(3), Py) have been theoretically studied at the B3LYP/TZVP level of theory. The calculations showed that complexes with Lewis bases only are unstable with respect to dissociation into their components, while complexes with Lewis acids only (such as aluminum and gallium trihalides) are stable. It was shown that formation of ternary D→BZ→A complexes may be achieved by subsequent introduction of the Lewis acid (acceptor A) and the Lewis base (donor D) to borazine. The nature of substituents in the borazine ring, their number, and position were shown to have only minor influence on the stability of ternary D→BZ→A complexes due to the compensation effect. Much weaker acceptor properties of borazine are explained in terms of large endothermic pyramidalization energy of the boron center in the borazine ring. In contrast to borazine, binary complexes of the isoelectronic benzene were predicted to be weakly bound even in the case of very strong Lewis acids; ternary DA complexes of benzene were predicted to be unbound. The donor-acceptor complex formation was predicted to significantly reduce both the endothermicity (by 70-95 kJ mol(-1)) and the activation energy (by 40-70 kJ mol(-1)) for the borazine hydrogenation. Thus, activation of the borazine ring by Lewis acids may be a facile way for the hydrogenation of borazines and polyborazines.
硼氮烷(BZ)及其取代衍生物与路易斯酸(A = MCl(3), MBr(3); M = B, Al, Ga)和路易斯碱(D = NH(3), Py)的给体-受体配合物在 B3LYP/TZVP 理论水平上进行了理论研究。计算表明,仅与路易斯碱配位的配合物不稳定,会分解为其组成部分,而仅与路易斯酸配位的配合物(如三卤化铝和三卤化镓)则是稳定的。研究表明,通过随后引入路易斯酸(受体 A)和路易斯碱(给体 D),可以形成三元 D→BZ→A 配合物。硼氮烷环上取代基的性质、数量和位置对三元 D→BZ→A 配合物的稳定性只有很小的影响,这是由于补偿效应。由于硼中心在硼氮烷环中的大吸热三角化能,硼氮烷的吸电子性质较弱。与硼氮烷相反,预测具有等电子苯的二元配合物即使在非常强的路易斯酸存在下也是弱键合的;预测苯的三元 DA 配合物是无键合的。给体-受体配合物的形成可显著降低硼氮烷氢化的吸热性(降低 70-95 kJ mol(-1)) 和活化能(降低 40-70 kJ mol(-1))。因此,路易斯酸对硼氮烷环的活化可能是硼氮烷和聚硼氮烷氢化的一种简便方法。