Wysokiński Rafał, Michalczyk Mariusz, Zierkiewicz Wiktor, Scheiner Steve
Faculty of Chemistry, Wrocław University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland.
Phys Chem Chem Phys. 2019 May 22;21(20):10336-10346. doi: 10.1039/c9cp01759c.
One of several tetrel (T) atoms was covalently attached to three F atoms and a substituted phenyl ring. A NH3 base can form a tetrel bond with TF3C6H2R3 (T = Si, Ge, Sn, Pb; R = H, F, CH3) in a position opposite either an F atom or the ring. The σ-hole opposite the highly electron-withdrawing F (T-F) is more intense than that opposite the ring (T-C). However, when the Lewis base deforms from a tetrahedral to a trigonal bipyramidal shape so as to accommodate the base, it is the T-C σ-hole that is more intense. Accordingly, it is the T-C tetrel-bonded complex for which there is a larger interaction energy with NH3, as high as 34 kcal mol-1. Countering this trend, it requires more energy for the TF3C6H2R3 to deform into the geometry it adopts within the T-C complex than within its T-F counterpart. There is consequently a balance between the overall binding energies of the two competing sites. The smaller tetrel atoms Si and Ge, with their larger deformation energies, show a preference for T-F tetrel binding, while the T-C site is preferred by Pb which suffers from a smaller degree of deformation energy. There is a near balance for T = Sn and the two sites show comparable binding energies.
几个四价元素(T)原子之一与三个氟原子和一个取代苯环共价相连。一个NH₃碱可以在与一个氟原子或苯环相对的位置与TF₃C₆H₂R₃(T = Si、Ge、Sn、Pb;R = H、F、CH₃)形成四价元素键。与强吸电子的氟(T-F)相对的σ-空穴比与苯环(T-C)相对的σ-空穴更强。然而,当路易斯碱从四面体形状变形为三角双锥形状以容纳该碱时,T-C σ-空穴更强。因此,与NH₃相互作用能更大的是T-C四价元素键合配合物,高达34 kcal mol⁻¹。与这种趋势相反,TF₃C₆H₂R₃变形为其在T-C配合物中所采用的几何形状比在其T-F对应物中需要更多能量。因此,两个竞争位点的总结合能之间存在平衡。较小的四价元素原子Si和Ge,由于其较大的变形能,表现出对T-F四价元素键合的偏好,而Pb更倾向于T-C位点,因为其变形能较小。对于T = Sn,两者近乎平衡,两个位点表现出相当的结合能。