Eastern Illinois University, Department of Chemistry, 600 Lincoln Ave., Charleston, IL 61920, USA.
Phys Chem Chem Phys. 2011 Aug 21;13(31):14043-9. doi: 10.1039/c1cp20684b. Epub 2011 May 20.
The structure of the CH(2)ClF···HCCH dimer has been determined using both chirped-pulse and resonant cavity Fourier-transform microwave spectroscopy. The complex has C(s) symmetry and contains both a double C-H···π interaction, in which one π-bond acts as acceptor to two hydrogen atoms from the CH(2)ClF donor, and a weak C-H···Cl interaction, with acetylene as the donor. Analysis of the rotational spectra of four isotopologues (CH(2)(35)ClF···H(12)C(12)CH, CH(2)(37)ClF···H(12)C(12)CH, CH(2)(35)ClF···H(13)C(13)CH, and CH(2)(37)ClF-H(13)C(13)CH) has led to a structure with C-H···π distances of 3.236(6) Å and a C-H···Cl distance of 3.207(22) Å, in good agreement with ab initio calculations at the MP2/6-311++G(2d,2p) level. Both weak contacts are longer than those observed in similar complexes containing a single C-H···π interaction that lies in the C(s) plane; however, this appears to be the first double C-H···π contact to be studied by microwave spectroscopy, so there is little data for direct comparison. The rotational and chlorine nuclear quadrupole coupling constants for the most abundant isotopologue are: A = 5262.899(14) MHz, B = 1546.8074(10) MHz, C = 1205.4349(7) MHz, χ(aa) = 28.497(5) MHz, χ(bb) = -65.618(13) MHz, and χ(cc) = 37.121(8) MHz.
使用啁啾脉冲和共振腔傅里叶变换微波光谱法确定了 CH(2)ClF···HCCH 二聚体的结构。该配合物具有 C(s)对称性,包含两个双 C-H···π 相互作用,其中一个π键充当两个氢原子的受体,来自 CH(2)ClF 给体,以及一个较弱的 C-H···Cl 相互作用,其中乙炔为供体。对四个同位素(CH(2)(35)ClF···H(12)C(12)CH、CH(2)(37)ClF···H(12)C(12)CH、CH(2)(35)ClF···H(13)C(13)CH 和 CH(2)(37)ClF-H(13)C(13)CH)的旋转光谱分析导致结构具有 3.236(6)Å 的 C-H···π 距离和 3.207(22)Å 的 C-H···Cl 距离,与 MP2/6-311++G(2d,2p) 水平的从头算计算结果吻合良好。两个弱接触都比含有单个 C-H···π 相互作用的类似配合物中的接触长,该相互作用位于 C(s) 平面内;然而,这似乎是第一个通过微波光谱学研究的双 C-H···π 接触,因此几乎没有数据可直接比较。最丰富同位素的旋转和氯核四极耦合常数为:A = 5262.899(14)MHz,B = 1546.8074(10)MHz,C = 1205.4349(7)MHz,χ(aa) = 28.497(5)MHz,χ(bb) = -65.618(13)MHz 和 χ(cc) = 37.121(8)MHz。