首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Confinement effects on C-H and C-F stretching vibrational frequencies of difluoromethane in cold inert gas matrixes: a combined infrared spectroscopy and electronic structure theory study
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Confinement effects on C-H and C-F stretching vibrational frequencies of difluoromethane in cold inert gas matrixes: a combined infrared spectroscopy and electronic structure theory study

机译:冷惰性气体基质中二氟甲烷C-H和C-F拉伸振动频率的限制效应:一种红外光谱和电子结构理论研究

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Mid-infrared spectra of difluoromethane (DFM) have been recorded by confining the molecule in the matrix cages of pure argon, nitrogen and in the mixed matrixes of argon and nitrogen obtained by mixing the two gases in definite proportions. The measured spectra depict distinct confinement effects in terms of the infrared spectral shifts of the C-H and C-F stretching vibrational fundamentals as compared to the free molecules in the gas-phase, and also some remarkable changes in band appearances and relative intensities. The signs of the spectral shifts are observed to be different for the.C- H and.C- F transitions. Pronounced blue shifts are observed for the two.C- H modes in pure nitrogen matrix, which progressively reduce in magnitude in the mixed matrixes, and is least in the pure argon matrix. On the other hand, distinct red shifts of the.C- F vibrations are evident in pure nitrogen matrix, which are reduced in magnitude in the mixed matrixes, and become even less pronounced in pure argon matrix. The effect of Fermi resonances in the.C- H region, that has motivated several previous investigations of DFM including high resolution gas phase studies, becomes explicit upon comparison of the matrix isolation spectrum with the gas phase spectrum. Electronic structure calculations using several DFT and DFT-D methods, in conjunction with NBO analysis, have been carried out for various sizes of DFM-N2 and DFM-Ar complexes in order to understand the underlying interactions responsible for the observed shifts. The calculations are found to satisfactorily reproduce the observed variations in magnitude and direction of the shifts of both the.C- H and.C- F transitions for the change of the medium. It is inferred that the inert gas matrix environment exerts an electronic re-organization within the DFM molecule, and the consequent rehybridization of the carbon-centric hybrid orbital of the C-H and C-F bonds is responsible for the observed spectral shifts.
机译:通过将二氟甲烷(DFM)分子限制在纯氩气、氮气的基质笼中,以及将两种气体按一定比例混合得到的氩气和氮气的混合基质中,记录了DFM的中红外光谱。与气相中的自由分子相比,测量的光谱描述了C-H和C-F伸缩振动基础的红外光谱位移方面的明显限制效应,以及带外观和相对强度的一些显著变化。观察到光谱位移的迹象在不同的情况下有所不同。C-H和。C-F转换。在这两种情况下观察到了明显的蓝移。纯氮基体中的C-H模在混合基体中逐渐减小,在纯氩基体中最小。另一方面,这一趋势出现了明显的红移。纯氮基体中的C-F振动很明显,混合基体中的C-F振动幅度降低,而纯氩基体中的C-F振动则更不明显。费米共振的影响。C-H区域是DFM研究的前驱动力,包括高分辨率气相研究,通过比较基质隔离光谱和气相光谱,C-H区域变得清晰。使用几种DFT和DFT-D方法,结合NBO分析,对不同尺寸的DFM-N2和DFM-Ar配合物进行了电子结构计算,以了解导致所观察到位移的潜在相互作用。计算结果令人满意地再现了观测到的两个方向位移的大小和方向变化。C-H和。C-F转换用于介质的变化。据推测,惰性气体基质环境在DFM分子内施加了电子重新组织,因此C-H和C-F键的碳中心杂化轨道的再杂化是观察到的光谱位移的原因。

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