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Theoretical Investigation of Mono- and Di-Chloro-Substitient Effects on the Insulation and Greenhouse Properties of Octafluorocyclobutane

机译:单和二氯取代基对八氟环丁烷的隔热和温室效应的理论研究

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摘要

Octafluorocyclobutane, c-C4F8, and its derivatives are regarded as promising replacements of insulation gaseous SF6, which are currently widely used in electric equipment but suffer greatly from its greenhouse effect. Based on the recent finding that the dielectric and thermodynamics properties of insulating gases are greatly dependent on the molecule's microscopic electronic and vibrational parameters, in this work, we use density functional theory (DFT) to study the molecular structures, electron affinities, and IR-active vibrational frequencies as well as thermodynamic properties for c-C4F8 and a series of mono-, di-substituted c-C4F8 compounds. It is shown that DFT calculation of perfluoro-compounds is sensitive to the chosen functional. Although all chloro-substituted c-C4F8 molecules are found to have much larger electron affinities, only part of them have less IR intensity in the atmospheric IR “window” than c-C4F8. Such a study provides useful guideline for the pre-screening search for new insulation gases via electronic structure calculations.
机译:八氟环丁烷,c-C4F8及其衍生物被认为是绝缘气态SF6的有前途的替代品,后者目前已广泛用于电气设备中,但其温室效应却十分严重。基于最近的发现,绝缘气体的介电和热力学性质在很大程度上取决于分子的微观电子和振动参数,在这项工作中,我们使用密度泛函理论(DFT)来研究分子结构,电子亲和力和IR- c-C4F8和一系列单,双取代c-C4F8化合物的有效振动频率以及热力学性质。结果表明,全氟化合物的DFT计算对所选功能敏感。尽管发现所有氯取代的c-C4F8分子都具有更大的电子亲和力,但在大气IR“窗口”中,只有一部分具有比c-C4F8更低的IR强度。这样的研究为通过电子结构计算对新的绝缘气体进行预筛选搜索提供了有用的指导。

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