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首页> 外文期刊>Molecular physics >Rotational barrier and thermodynamical parameters of furfural, thiofurfural, and selenofurfural in the gas and solution phases: theoretical study based on density functional theory method
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Rotational barrier and thermodynamical parameters of furfural, thiofurfural, and selenofurfural in the gas and solution phases: theoretical study based on density functional theory method

机译:气相和溶液相中糠醛,硫代糠醛和硒代糠醛的旋转势垒和热力学参数:基于密度泛函理论方法的理论研究

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摘要

This work aims to study the trans and cis conformers of furfural, thiofurfural and selenofurfural in the gas and solution phases. Assuming that there is equilibrium between these conformers, the transition state has also been investigated. All computations have been done using density functional theory method with B3LYP as the functional and 6-311 ++G(d,p) as the basis sets. The optimized molecular structures and related parameters of these conformers are reported. The infrared wavenumbers and Raman activities of these conformers are also reported with appropriate assignments. The energy differences between the trans and cis conformers, associated barriers and thermodynamical parameters have been derived from the computations. It is found that the structural parameters are not much different in the gas and solution phases. However, in the gas phase, the trans conformer is always more stable, but increasing the polarity of the solvent leads to the cis conformer becoming more stable. The rotational barrier is always larger than the energy difference and both of them increase when the solvent becomes more polar. Some of the results for furfural compare satisfactorily with literature and therefore the data from this work will be useful for thiofurfuraldehyde and selenofurfuraldehyde, as their literature is limited.
机译:这项工作旨在研究气相和溶液相中糠醛,硫代糠醛和硒代糠醛的反式和顺式构象。假设这些构象异构体之间存在平衡,则还研究了过渡态。所有计算均使用密度泛函理论方法进行,以B3LYP为函数,以6-311 ++ G(d,p)为基础。报告了这些构象体的优化分子结构和相关参数。还报告了这些构象体的红外波数和拉曼活性,并进行了适当的分配。反式和顺式构象异构体之间的能量差,相关的势垒和热力学参数已从计算中得出。发现在气相和溶液相中结构参数没有太大差异。然而,在气相中,反式构象异构体总是更稳定,但是增加溶剂的极性导致顺式构象异构体变得更稳定。旋转势垒总是大于能量差,并且当溶剂变得极性更大时,旋转势垒都增加。糠醛的一些结果与文献比较令人满意,因此,由于其文献有限,因此这项工作的数据对于硫代糠醛和硒代糠醛将是有用的。

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