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配合物C2H(4-n)Fn-ClF(n = 0 - 2)中π卤键的研究

Study of pi halogen bonds in complexes C2H(4-n)Fn-ClF (n = 0-2).

作者信息

Li Rui-Yan, Li Zhi-Ru, Wu Di, Li Ying, Chen Wei, Sun Chia-Chung

机构信息

State Key Laboratory of Theoretical and Computational Chemistry, Institute of Theoretical Chemistry Jilin University, Changchun, 130023 People's Republic of China.

出版信息

J Phys Chem A. 2005 Mar 24;109(11):2608-13. doi: 10.1021/jp045001i.

Abstract

The pi-halogen bond may be considered, in a broad sense, essentially a pi-hydrogen bond. Using the counterpoise-corrected potential energy surface method (interaction energy optimization), the stationary structures of the C2H(4-n)Fn-ClF (n = 0-2) complexes with all real frequencies have been obtained at the MP2/aug-cc-pVDZ level. For C2H(4-n)Fn-ClF (n = 0-2), the pi-halogen bond has a long distance and is elongated by the F substituent effect. The pi-halogen bond length order is 2.661 A for C2H4-ClF < 2.745 A for C2H3F-ClF < 2.766 A for g-C2H2F2-ClF < 2.8076 A for trans-C2H2F2-ClF < 2.8079 A for cis-C2H2F2-ClF. For three complexes C2H3F-ClF, g-C2H2F2-ClF, and cis-C2H2F2-ClF, the pi-halogen bonds are further shifted and sloped by the F substituent effect. The F substituent effect reduces also the interaction energy of the pi-halogen bond. The interaction energies are respectively -3.7 for C2H4-ClF, -2.8 for C2H3F-ClF, -2.3 for g-C2H2F2-ClF, -1.9 for cis-C2H2F2-ClF, and -1.8 kcal/mol for trans-C2H2F2-ClF, at the CCSD(T)/aug-cc-pVDZ level. The electron correlation contribution of the interaction energy is large for C2H(4-n)Fn-ClF (n = 0-2), which shows that the stabilities of the pi-halogen bond systems results primarily from the dispersion interaction. In the double F substituent systems, the interaction energy of the pi-halogen bond structure with a longer interaction distance is larger than that of the corresponding pi-hydrogen bond structure with a shorter interaction distance. This may be because there are the large electron correlation contributions of the interaction energy, and a secondary interaction between lone pairs of Cl atom and some atoms (H, C) with positive charges in the pi-halogen bond structure.

摘要

从广义上讲,π-卤键本质上可被视为一种π-氢键。使用经抗衡校正的势能面方法(相互作用能优化),在MP2/aug-cc-pVDZ水平上获得了具有所有实频的C2H(4-n)Fn-ClF(n = 0 - 2)配合物的稳定结构。对于C2H(4-n)Fn-ClF(n = 0 - 2),π-卤键距离较长,且会因F取代基效应而伸长。π-卤键长度顺序为:C2H4-ClF的为2.661 Å < C2H3F-ClF的为2.745 Å < g-C2H2F2-ClF的为2.766 Å < 反式C2H2F2-ClF的为2.8076 Å < 顺式C2H2F2-ClF的为2.8079 Å。对于C2H3F-ClF、g-C2H2F2-ClF和顺式C2H2F2-ClF这三种配合物,π-卤键会因F取代基效应而进一步偏移和倾斜。F取代基效应也会降低π-卤键的相互作用能。在CCSD(T)/aug-cc-pVDZ水平下,相互作用能分别为:C2H4-ClF为 - 3.7、C2H3F-ClF为 - 2.8、g-C2H2F2-ClF为 - 2.3、顺式C2H2F2-ClF为 - 1.9,反式C2H2F2-ClF为 - 1.8 kcal/mol。对于C2H(4-n)Fn-ClF(n = 0 - 2),相互作用能的电子相关贡献很大,这表明π-卤键体系的稳定性主要源于色散相互作用。在双F取代体系中,具有较长相互作用距离的π-卤键结构的相互作用能大于相应的具有较短相互作用距离的π-氢键结构的相互作用能。这可能是因为相互作用能存在较大电子相关贡献,以及在π-卤键结构中Cl原子孤对与一些带正电荷的原子(H、C)之间存在次级相互作用。

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