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Quantum chemical study of mechanisms of dissociation and isomerization reactions in some molecules and radicals of astrophysical significance: Cyanides and related molecules

机译:量子化学研究某些分子和天文学意义的自由基离解和异构化反应机理的研究:氰化物和相关分子

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A theoretical study of the mechanism of photodecomposition in carbonyl cyanide, diethynyl ketone, acetyl cyanide and formyl cyanide has been conducted using density functional and MP2 theories. A complete analysis of the electronic spectra of these molecules in terms of nature, energy and intensity of electronic transitions has been provided by time-dependent density functional theory. Mixing coefficients and main configurations of the electronic states have been used to identify the states leading to the photodecomposition process. While the Rydberg state 1(n,3s) is involved in the dissociation of formyl cyanide and acetyl cyanide, the $e???^{*}_{CC} / e???^{*}_{CN}$ states are involved in the case of carbonyl cyanide and diethynyl ketone. In all cases, however, stepwise decomposition process is preferred over the concerted reaction process. Based on potential energy curves for bond dissociation and the transition state and IRC studies, it is found that besides the direct dissociation of carbonyl cyanide, a photoisomerization process through a non-planar transition state may also occur resulting in the formation of a stable and planar isomer CNC(O)CN. A complete vibrational analysis of the higher energy isomer has been conducted and several new fundamental bands are predicted. Some of the earlier experimental results on the photodecomposition mechanism and energies of photofragments in carbonyl cyanide and acetyl cyanide have also been rationalized.
机译:使用密度泛函和MP2理论对羰基氰化物,二乙炔基酮,乙酰基氰化物和甲酰基氰化物中的光分解机理进行了理论研究。随时间变化的密度泛函理论提供了对这些分子的电子光谱的性质,能量和电子跃迁强度的完整分析。电子状态的混合系数和主要配置已用于识别导致光分解过程的状态。 Rydberg态1(n,3s)参与甲酰氰和乙酰氰的离解,但是$ e ??? ^ {** _ {CC} / e ??? ^ {*} _ {CN} $在羰基氰化物和二乙炔基酮的情况下,所有状态都涉及。然而,在所有情况下,逐步分解过程优于协同反应过程。根据键解离的势能曲线和过渡态以及IRC研究,发现除了羰基氰化物的直接解离以外,还可能发生通过非平面过渡态的光异构化过程,从而形成稳定且平面的异构体CNC(O)CN。已经对高能异构体进行了完整的振动分析,并预测了几个新的基带。关于羰基氰化物和乙酰氰化物中光碎片的光分解机理和能量的早期实验结果也已经合理化。

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