Kiani Farooq A, Hofmann Matthias
Anorganisch-Chemisches Institut, Ruprecht-Karls-Universität Heidelberg, Germany.
Inorg Chem. 2005 May 16;44(10):3746-54. doi: 10.1021/ic0483803.
Relevant structural features and corresponding energy penalties were determined that allow to easily estimate the relative stabilities of 11-vertex nido-phospha- and aza-substituted boranes, borates, carbaboranes, and carbaborates. For this purpose, density functional theory computations at the B3LYP/6-311+G(d,p)//B3LYP/6-31G(d)+ZPE level were carried out to determine the relative energies of 95 phospha- and 46 aza(carba)boranes and -borates. Energy penalties assigned to disfavoring structural features show additive behavior and excellent precision with respect to the computed results, as in the case of 6- and 11-vertex nido-carboranes and -borates. An unsubstituted phosphorus atom was found to possess energy penalties quite similar to those of the three-electron-donating H-C group. A bare nitrogen atom has energy penalties much larger than those of a bare phosphorus atom. Four-electron-donating RP and RN moieties, however, have even more adverse energy penalties. The disfavoring effects of heteroatoms in a borane cluster are determined by the amount of electron localization, that is, primarily by the number of skeletal electrons that formally originate from the heterogroup and secondarily by the electronegativity. Heteroatom energy penalties are independent of the type of the other heteroatoms present in the same cluster. Some novel phospha(carba)borane geometries with bare and exo-substituted phosphorus atoms in the same cluster have favorable thermodynamic stabilities competitive with those of known isomers.
确定了相关的结构特征和相应的能量惩罚,这使得能够轻松估算11顶点巢式磷和氮取代的硼烷、硼酸盐、碳硼烷和碳硼酸盐的相对稳定性。为此,在B3LYP/6-311+G(d,p)//B3LYP/6-31G(d)+ZPE水平上进行了密度泛函理论计算,以确定95种磷和46种氮(碳)硼烷及硼酸盐的相对能量。与6顶点和11顶点巢式碳硼烷及硼酸盐的情况一样,赋予不利结构特征的能量惩罚表现出加和行为,并且相对于计算结果具有出色的精度。发现未取代的磷原子具有与供电子的H-C基团非常相似的能量惩罚。裸氮原子的能量惩罚比裸磷原子的大得多。然而,四电子供体的RP和RN部分具有更不利的能量惩罚。硼烷簇中杂原子的不利影响由电子定域量决定,即主要由正式源自杂基团的骨架电子数决定,其次由电负性决定。杂原子的能量惩罚与同一簇中存在的其他杂原子的类型无关。一些在同一簇中具有裸磷原子和外取代磷原子的新型磷(碳)硼烷几何结构具有与已知异构体相当的良好热力学稳定性。