School of Chemistry & Chemical Engineering, Qujing Normal University, Qujing, 655011, Yunnan, China,
J Mol Model. 2014 Jan;20(1):2076. doi: 10.1007/s00894-014-2076-0. Epub 2014 Jan 25.
The ternary complexes X(-) · 1 · YF (1 = triazine, X = Cl, Br and I, Y = H, Cl, Br, I, PH2 and AsH2) have been investigated by MP2 calculations to understand the noncovalently electron-withdrawing effects on anion-arene interactions. The results indicate that in binary complexes (1 · X(-)), both weak σ-type and anion-π complexes can be formed for Cl(-) and Br(-), but only anion-π complex can be formed for I(-). Moreover, the hydrogen-bonding complex is the global minimum for all three halides in binary complexes. However, in ternary complexes, anion-π complex become unstable and only σ complex can retain in many cases for Cl(-) and Br(-). Anion-π complex keeps stable only when YF = HF. In contrast with binary complexes, σ complex become the global minimum for Cl(-) and Br(-) in ternary complexes. These changes in binding mode and strength are consistent with the results of covalently electron-withdrawing effects. However, in contrast with the covalently electron-withdrawing substituents, Cl(-) and Br(-) can attack the aromatic carbon atom to form a strong σ complex when the noncovalently electron-withdrawing effect is induced by halogen bonding. The binding behavior for I(-) is different from that for Cl(-) and Br(-) in two aspects. First, the anion-π complex for I(-) can also keep stable when the noncovalent interaction is halogen bonding. Second, the anion-π complex for I(-) is the global minimum when it can retain as a stable structure.
已通过 MP2 计算研究了三元配合物 X(-)·1·YF(1=三嗪,X=Cl、Br 和 I,Y=H、Cl、Br、I、PH2 和 AsH2),以了解非共价电子对阴离子-芳环相互作用的影响。结果表明,在二元配合物(1·X(-))中,Cl(-)和 Br(-)可以形成弱σ型和阴离子-π配合物,但 I(-)只能形成阴离子-π配合物。此外,在二元配合物中,氢键配合物是所有三种卤化物的全局最小值。然而,在三元配合物中,阴离子-π配合物变得不稳定,在许多情况下只有 Cl(-)和 Br(-)才能保留σ配合物。只有当 YF=HF 时,阴离子-π配合物才保持稳定。与二元配合物相比,σ配合物在三元配合物中成为 Cl(-)和 Br(-)的全局最小值。这种结合模式和强度的变化与共价电子供体的结果一致。然而,与共价电子供体取代基不同,当卤素键引起非共价电子供体效应时,Cl(-)和 Br(-)可以攻击芳碳原子形成强 σ配合物。I(-)的结合行为在两个方面与 Cl(-)和 Br(-)不同。首先,当非共价相互作用为卤素键时,I(-)的阴离子-π配合物也可以保持稳定。其次,当阴离子-π配合物可以保持稳定结构时,它是全局最小值。