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Hydrogen-adduction to open-shell graphene fragments: spectroscopy thermochemistry and astrochemistry

机译:氢加成到开壳石墨烯碎片上:光谱学热化学和天体化学

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摘要

We apply a combination of state-of-the-art experimental and quantum-chemical methods to elucidate the electronic and chemical energetics of hydrogen adduction to a model open-shell graphene fragment. The lowest-energy adduct, 1H-phenalene, is determined to have a bond dissociation energy of 258.1 kJ mol–1, while other isomers exhibit reduced or in some cases negative bond dissociation energies, the metastable species being bound by the emergence of a conical intersection along the high-symmetry dissociation coordinate. The gas-phase excitation spectrum of 1H-phenalene and its radical cation are recorded using laser spectroscopy coupled to mass-spectrometry. Several electronically excited states of both species are observed, allowing the determination of the excited-state bond dissociation energy. The ionization energy of 1H-phenalene is determined to be 7.449(17) eV, consistent with high-level W1X-2 calculations.
机译:我们将最先进的实验方法和量子化学方法相结合,以阐明模型内壳石墨烯片段的氢加成反应的电子和化学能。最低能量的加合物1H-菲被确定具有258.1 kJ mol –1 的键解离能,而其他异构体的键解离能降低或在某些情况下为负键,亚稳物种为沿高对称解离坐标轴出现圆锥形相交的边界。 1H-苯及其气相阳离子的气相激发光谱是用与质谱耦合的激光光谱法记录的。观察到两种物质的几种电子激发态,从而可以测定激发态键解离能。确定的1H-菲的电离能为7.449(17)eV,与高级W1X-2计算一致。

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