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首页> 外文期刊>The Journal of Chemical Physics >Relative energies, structures, vibrational frequencies, and electronic spectra of pyrylium cation, an oxygen-containing carbocyclic ring isoelectronic with benzene, and its isomers
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Relative energies, structures, vibrational frequencies, and electronic spectra of pyrylium cation, an oxygen-containing carbocyclic ring isoelectronic with benzene, and its isomers

机译:含氧碳环与苯等电子的吡啶鎓阳离子及其异构体的相对能,结构,振动频率和电子光谱

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摘要

We have studied relative energies, structures, rotational, vibrational, and electronic spectra of the pyrylium cation, an oxygen-containing six-membered carbocyclic ring, and its six isomers, using ab initio quantum chemical methods. Isoelectronic with benzene, the pyrylium cation has a benzenoid structure and is the global minimum on the singlet potential energy surface of C _5H_5O~+. The second lowest energy isomer, the furfuryl cation, has a five membered backbone akin to a sugar, and is only 16 kcal mol~(-1) above the global minimum computed using coupled cluster theory with singles, doubles, and perturbative triple excitations (CCSD(T)) with the correlation consistent cc-pVTZ basis set. Other isomers are 25, 26, 37, 60, and 65 kcal mol~(-1) above the global minimum, respectively, at the same level of theory. Lower level methods such as density functional theory (B3LYP) and second order M?ller-Plesset perturbation theory performed well when tested against the CCSD(T) results. The pyrylium and furfuryl cations, although separated by only 16 kcal mol~(-1), are not easily interconverted, as multiple bonds must be broken and formed, and the existence of more than one transition state is likely. Additionally, we have also investigated the asymptotes for the barrierless ion-molecule association of molecules known to exist in the interstellar medium that may lead to formation of the pyrylium cation.
机译:我们使用从头算量子化学方法研究了吡喃鎓阳离子,一个含氧的六元碳环及其六个异构体的相对能,结构,旋转,振动和电子光谱。吡喃鎓阳离子与苯等电子,具有苯甲结构,在C _5H_5O〜+的单重态势能面上是全局最小值。第二低能量异构体糠基阳离子具有类似于糖的五元骨架,仅比使用单,双和扰动三重激发的耦合簇理论计算的全局最小值高16 kcal mol〜(-1)( CCSD(T))和相关一致的cc-pVTZ基集。在相同的理论水平下,其他异构体分别比全局最小值高25、26、37、60和65 kcal mol〜(-1)。当针对CCSD(T)结果进行测试时,诸如密度泛函理论(B3LYP)和二阶Müller-Plesset微扰理论之类的较低级别方法表现良好。吡啶鎓和糠基阳离子尽管仅相隔16 kcal mol〜(-1),但不容易相互转化,因为必须打破并形成多个键,并且可能存在多个过渡态。此外,我们还研究了星际介质中已知分子的无障碍离子-分子缔合的渐近线,这可能导致形成吡啶鎓阳离子。

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