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

机译:宽带旋转光谱法和从头算计算确定OC ... AgI的分子几何

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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 rm(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 ? shorter than that found in the free CO molecule. The length of the Ag-I bond, r(AgI), is 0.013 ? shorter than in free AgI. Χ _(aa)(I) is determined to be -769.84(22) MHz for OC 107AgI 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.
机译:通过chi脉冲傅里叶变换微波光谱法测量了OC ... AgI六个同位素的基态振动态的纯旋转光谱。分配光谱以确定碘原子的旋转常数B _0,离心畸变常数D_J和核四极耦合常数Χ_(aa)(I)。复数是线性的。在银,碳和氧原子上的同位素取代允许通过结构确定的r_0,r_s和rm(1)方法建立键长。 OC ... AgI的r 0几何结构中C-O键的长度r(CO)为0.008?比游离的CO分子中的短。 Ag-I键的长度r(AgI)为0.013Ω。比免费的AgI短。对于OC 107AgI,X_(aa)(I)被确定为-769.84(22)MHz,这意味着金属卤化物键的离子特性为0.66。一氧化碳与分离的AgI分子的附着导致AgI的离子特性增加0.12。由实验数据确定的分子结构和光谱参数与显式相关的偶联簇单,双和扰动三联水平的计算结果一起显示。计算了振动频率,电偶极矩,核四极偶合常数和分子的离解能。

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