Shibasaki Kenta, Fujii Asuka, Mikami Naohiko, Tsuzuki Seiji
Department of Chemistry, Graduate School of Science, Tohoku University, Sendai 980-8578, Japan.
J Phys Chem A. 2007 Feb 8;111(5):753-8. doi: 10.1021/jp065076h.
The accurate interaction energies of the CH/pi interaction in the benzene-X clusters (X = ethylene and acetylene) were experimentally and theoretically determined. Two-color multiphoton ionization spectroscopy was applied, and the binding energies in the neutral ground state of the clusters were evaluated from the dissociation threshold measurements of the cluster cations. The experimental binding energies of the clusters (D0) were 1.4+/-0.2 and 2.7+/-0.2 kcal/mol, respectively. Estimated CCSD(T) interaction energies for the clusters at the basis set limit (De) were 2.2 and 2.8 kcal/mol, respectively. Calculated D0 values (1.7 and 2.4 kcal/mol, respectively) are close to the experimental values. Large electron correlation contributions (Ecorr=-3.6 and -2.8 kcal/mol, respectively) show that dispersion is the major source of the attraction in both clusters. The electrostatic interaction in the ethylene cluster is very small (-0.38 kcal/mol), as in the case of the benzene-methane cluster, whereas the electrostatic interaction in the acetylene cluster is large (-1.70 kcal/mol). The shifts of the S1-S0 transition also suggest that the ethylene cluster is a van der Waals-type cluster, but the acetylene cluster is a pi-hydrogen-bonded cluster. The nature of the CH/pi interaction of the "activated" alkyne C-H bond is significantly different from that of the "nonactivated" (or typical) alkane and alkene C-H bonds.
通过实验和理论方法确定了苯 - X 簇合物(X = 乙烯和乙炔)中 CH/π 相互作用的精确相互作用能。采用双色多光子电离光谱法,并根据簇阳离子的解离阈值测量评估了簇合物中性基态的结合能。簇合物的实验结合能(D₀)分别为 1.4±0.2 和 2.7±0.2 kcal/mol。在基组极限下(De),簇合物的估计 CCSD(T) 相互作用能分别为 2.2 和 2.8 kcal/mol。计算得到的 D₀ 值(分别为 1.7 和 2.4 kcal/mol)与实验值接近。较大的电子相关贡献(Ecorr 分别为 -3.6 和 -2.8 kcal/mol)表明,色散是两个簇合物中吸引力的主要来源。与苯 - 甲烷簇合物的情况一样,乙烯簇合物中的静电相互作用非常小(-0.38 kcal/mol),而乙炔簇合物中的静电相互作用较大(-1.70 kcal/mol)。S₁ - S₀ 跃迁的位移也表明,乙烯簇合物是范德华型簇合物,而乙炔簇合物是 π - 氢键簇合物。“活化”炔烃 C - H 键的 CH/π 相互作用的性质与“非活化”(或典型)烷烃和烯烃 C - H 键的性质有显著不同。