Atomic Physics Division, Department of Atomic Physics and Luminescence, Faculty of Applied Physics and Mathematics, Gdańsk University of Technology, Gdańsk, Poland.
Phys Chem Chem Phys. 2012 Feb 14;14(6):2056-64. doi: 10.1039/c2cp22847e. Epub 2012 Jan 9.
Electronic state spectroscopy of limonene has been investigated using vacuum ultraviolet photoabsorption spectroscopy in the energy range 5.0-10.8 eV. The availability of a high resolution photon beam (~0.075 nm) enabled detailed analysis of the vibrational progressions and allowed us to propose, for the first time, new assignments for several Rydberg series. Excited states located in the 7.5-8.4 eV region have been studied for the first time. A He(I) photoelectron spectrum has also been recorded from 8.2 to 9.5 eV and compared to previous low resolution works. A new value of 8.521 ± 0.002 eV for the ground ionic state adiabatic ionisation energy is proposed. Absolute photoabsorption cross sections were derived in the 10-26 eV range from electron scattering data. All spectra presented in this paper represent the highest resolution data yet reported for limonene. These experiments are complemented by new ab initio calculations performed for the three most abundant conformational isomers of limonene, which we then used in the assignment of the spectral bands.
采用真空紫外光吸收光谱技术,在 5.0-10.8 eV 的能量范围内研究了柠檬烯的电子态光谱。高分辨率光子束(约 0.075nm)的可用性使我们能够对振动进展进行详细分析,并首次为几个里德伯系列提出了新的分配。首次研究了位于 7.5-8.4 eV 区域的激发态。还从 8.2 到 9.5 eV 记录了 He(I)光电电子光谱,并与之前的低分辨率工作进行了比较。提出了基离子态绝热离化能的新值 8.521±0.002 eV。在 10-26 eV 的范围内,从电子散射数据中推导出了绝对光吸收截面。本文中给出的所有光谱都代表了迄今为止报道的柠檬烯的最高分辨率数据。这些实验通过对柠檬烯的三种最丰富的构象异构体进行新的从头算计算来补充,然后我们将其用于光谱带的分配。