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一个假π C-C键与氯化亚铜和氯化银的相互作用:通过转动光谱和从头算计算研究环丙烷⋯CuCl和环丙烷⋯AgCl。

Interaction of a pseudo-π C-C bond with cuprous and argentous chlorides: Cyclopropane⋯CuCl and cyclopropane⋯AgCl investigated by rotational spectroscopy and ab initio calculations.

作者信息

Zaleski Daniel P, Mullaney John C, Bittner Dror M, Tew David P, Walker Nicholas R, Legon Anthony C

机构信息

School of Chemistry, Newcastle University, Bedson Building, Newcastle-Upon-Tyne NE1 7RU, United Kingdom.

School of Chemistry, University of Bristol, Bristol BS8 1TS, United Kingdom.

出版信息

J Chem Phys. 2015 Oct 28;143(16):164314. doi: 10.1063/1.4934539.

Abstract

Strongly bound complexes (CH2)3⋯MCl (M = Cu or Ag), formed by non-covalent interaction of cyclopropane and either cuprous chloride or argentous chloride, have been generated in the gas phase by means of the laser ablation of either copper or silver metal in the presence of supersonically expanded pulses of a gas mixture containing small amounts of cyclopropane and carbon tetrachloride in a large excess of argon. The rotational spectra of the complexes so formed were detected with a chirped-pulse, Fourier transform microwave spectrometer and analysed to give rotational constants and Cu and Cl nuclear quadrupole coupling constants for eight isotopologues of each of (CH2)3⋯CuCl and (CH2)3⋯AgCl. The geometry of each of these complexes was established unambiguously to have C(2v) symmetry, with the three C atoms coplanar, and with the MCl molecule lying along a median of the cyclopropane C3 triangle. This median coincides with the principal inertia axis a in each of the two complexes (CH2)3⋯MCl. The M atom interacts with the pseudo-π bond linking the pair of equivalent carbon atoms (F)C (F = front) nearest to it, so that M forms a non-covalent bond to one C-C edge of the cyclopropane molecule. The (CH2)3⋯MCl complexes have similar angular geometries to those of the hydrogen- and halogen-bonded analogues (CH2)3⋯HCl and (CH2)3⋯ClF, respectively. Quantitative details of the geometries were determined by interpretation of the observed rotational constants and gave results in good agreement with those from ab initio calculations carried out at the CCSD(T)(F12*)/aug-cc-pVTZ-F12 level of theory. Interesting geometrical features are the lengthening of the (F)C-(F)C bond and the shrinkage of the two equivalent (B)C-(F)C (B = back) bonds relative to the C-C bond in cyclopropane itself. The expansions of the (F)C-(F)C bond are 0.1024(9) Å and 0.0727(17) Å in (CH2)3⋯CuCl and (CH2)3⋯AgCl, respectively, according to the determined r0 geometries. The C-C bond lengthening is in each case about four times that observed by similar methods in the corresponding complexes of MCl with ethyne and ethene, even though the cyclopropane complexes are more weakly bound than their ethyne and ethene analogues. Reasons for the larger increase in r(CC) in the pseudo-π complexes are discussed.

摘要

通过环丙烷与氯化亚铜或氯化银之间的非共价相互作用形成的强束缚复合物(CH2)3⋯MCl (M = Cu或Ag),已在气相中通过在大量氩气存在下,对含有少量环丙烷和四氯化碳的气体混合物进行超声速膨胀脉冲时,对铜或银金属进行激光烧蚀而生成。用啁啾脉冲傅里叶变换微波光谱仪检测如此形成的复合物的转动光谱,并进行分析,以给出(CH2)3⋯CuCl和(CH2)3⋯AgCl各自的八种同位素异构体的转动常数以及Cu和Cl核四极耦合常数。明确确定这些复合物中的每一个的几何结构具有C(2v)对称性,三个C原子共面,且MCl分子沿着环丙烷C3三角形的一条中线排列。这条中线与两个复合物(CH2)3⋯MCl中的每一个的主惯性轴a重合。M原子与连接最靠近它的一对等效碳原子(F)C (F = 前面)的赝π键相互作用,使得M与环丙烷分子的一个C - C边形成非共价键。(CH2)3⋯MCl复合物分别具有与氢键和卤键类似物(CH2)3⋯HCl和(CH2)3⋯ClF相似的角几何结构。通过对观测到的转动常数进行解释来确定几何结构的定量细节,其结果与在CCSD(T)(F12*)/aug-cc-pVTZ-F12理论水平上进行的从头算计算结果吻合良好。有趣的几何特征是相对于环丙烷本身的C - C键,(F)C-(F)C键伸长,以及两个等效的(B)C-(F)C (B = 后面)键收缩。根据确定的r0几何结构,在(CH2)3⋯CuCl和(CH2)3⋯AgCl中,(F)C-(F)C键的伸长分别为0.1024(9) Å和0.0727(17) Å。在每种情况下,C - C键的伸长约为通过类似方法在MCl与乙炔和乙烯的相应复合物中观测到的伸长的四倍,尽管环丙烷复合物的结合比它们的乙炔和乙烯类似物更弱。讨论了赝π复合物中r(CC)增加更大的原因。

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