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通过宽带旋转光谱和从头算计算确定 OC···AgI 的分子几何形状。

Molecular geometry of OC···AgI determined by broadband rotational spectroscopy and ab initio calculations.

机构信息

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

出版信息

J Chem Phys. 2012 Feb 14;136(6):064306. doi: 10.1063/1.3683221.

Abstract

Pure rotational spectra of the ground vibrational states of six isotopologues of OC···AgI have been measured by chirped-pulse Fourier transform microwave spectroscopy. The spectra are assigned to determine the rotational constant, B(0), centrifugal distortion constant, D(J), and nuclear quadrupole coupling constant of the iodine atom, χ(aa)(I). The complex is linear. Isotopic substitutions at the silver, carbon, and oxygen atoms allow bond lengths to be established by the r(0), r(s), and r(m)((1)) methods of structure determination. The length of the C-O bond, r(CO), in the r(0) geometry for OC···AgI is 0.008 Å shorter than that found in the free CO molecule. The length of the Ag-I bond, r(AgI), is 0.013 Å shorter than in free AgI. χ(aa)(I) is determined to be -769.84(22) MHz for OC···(107)AgI implying an ionic character of 0.66 for the metal halide bond. Attachment of carbon monoxide to the isolated AgI molecule results in an increase of the ionic character of AgI of 0.12. The molecular structure and spectroscopic parameters determined from the experimental data are presented alongside the results of calculations at the explicitly correlated coupled-cluster singles, doubles and perturbative triples level. Vibrational frequencies, the electric dipole moment, the nuclear quadrupole coupling constant, and the dissociation energy of the molecule have been calculated.

摘要

通过啁啾脉冲傅里叶变换微波光谱法测量了 OC···AgI 的六个同位素异构体基态的纯旋转光谱。通过对光谱进行分析,确定了旋转常数 B(0)、离心扭曲常数 D(J)和碘原子的核四极矩耦合常数 χ(aa)(I)。该配合物呈线性。通过银、碳和氧原子的同位素取代,可以通过 r(0)、r(s)和 r(m)((1))方法确定键长。在 OC···AgI 的 r(0)几何结构中,C-O 键 r(CO)的长度比自由 CO 分子中的长度短 0.008 Å。Ag-I 键 r(AgI)的长度比自由 AgI 中的短 0.013 Å。OC···(107)AgI 的 χ(aa)(I)被确定为-769.84(22)MHz,表明金属卤化物键的离子性为 0.66。一氧化碳与孤立的 AgI 分子结合导致 AgI 的离子性增加 0.12。从实验数据确定的分子结构和光谱参数与在明确相关耦合簇单双加微扰三的水平上计算的结果并列给出。计算了分子的振动频率、电偶极矩、核四极矩耦合常数和离解能。

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