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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Infrared and Raman Spectroscopy of 9,9'-Spirobifiuorene, Bis(2,2'-biphenylene)silane, and Bis (2,2'-biphenylene)germane. Vibrational Assignment by Depolarization Measurement and Density Functional Theory Studies
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Infrared and Raman Spectroscopy of 9,9'-Spirobifiuorene, Bis(2,2'-biphenylene)silane, and Bis (2,2'-biphenylene)germane. Vibrational Assignment by Depolarization Measurement and Density Functional Theory Studies

机译:9,9'-Spirobifiuorene,Bis(2,2'-联亚苯基)硅烷和Bis(2,2'-联亚苯基)锗烷的红外和拉曼光谱。通过去极化测量和密度泛函理论研究振动分配

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摘要

The infrared and Raman spectra of 9,9'-spirobifluorene (SBFL), bis(2,2'-biphenylene)silane (BBPS), and bis(2,2'-biphenylene)germane (BBPG) are measured, and the vibrational frequencies and modes for these molecules are assigned by ab initio Hartree-Fock and Becke 3-Lee-Yang-Parr (B3LYP) density functional theory (DFT) calculations using the 4-31G and 3-21G basis sets for SBFL and for BBPS and BBPG, respectively. Assignment of some of the vibrational modes of SBFL is also confirmed by solution Raman spectroscopy with the depolarization method. Comparison of the calculated and experimental vibrational spectra reveals that the DFT calculations are quite accurate in predicting the vibrational frequencies, intensities, and modes. It is found that the central Si and Ge atoms dominantly enhance some of the IR intensities of the vibrations involving only the M-C4 (M = Si, Ge) antisymmetric stretching motion. The enhancement of some of the infrared intensities is accounted for by the increase of the electric dipole moment involving the M--C4 vibrations due to the presence of the small electronegative Si and Ge atoms in the central position.
机译:测量了9,9'-螺二芴(SBFL),双(2,2'-联苯)硅烷(BBPS)和双(2,2'-联苯))锗烷(BBPG)的红外光谱和拉曼光谱,并进行了振动分析这些分子的频率和模式由从头开始Hartree-Fock和Becke 3-Lee-Yang-Parr(B3LYP)密度泛函理论(DFT)计算使用SBFL和BBPS和4-31G和3-21G基集BBPG。 SBFL的某些振动模式的分配也通过采用去极化方法的溶液拉曼光谱进行了确认。对计算出的振动频谱和实验振动频谱进行比较后发现,DFT计算在预测振动频率,强度和模式方面非常准确。发现中心的Si和Ge原子主要增强了仅涉及M-C4(M = Si,Ge)反对称拉伸运动的振动的某些IR强度。由于中心位置存在小负电性Si和Ge原子导致涉及M–C4振动的电偶极矩增加,从而导致某些红外强度的增强。

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