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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Theoretical study of valance photoelectron spectra of hypoxanthine, xanthine, and caffeine using direct symmetry-adapted cluster/configuration interaction methodology
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Theoretical study of valance photoelectron spectra of hypoxanthine, xanthine, and caffeine using direct symmetry-adapted cluster/configuration interaction methodology

机译:次黄嘌呤,黄嘌呤和咖啡因的价态光电子能谱的直接对称适应簇/构型相互作用方法研究

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摘要

UV photoelectron spectra of hypoxanthine, xanthine, and caffeine, up to 20 eV, were calculated and compared with the experimental spectra reported in literature. The calculations were performed using a novel version of the quantum mechanical symmetry-adapted cluster/configuration interaction (SAC-CI) method termed, direct SAC-CI. The Duning/Huzinaga valance double-zeta D95+(d,p) Gaussian basis set was also employed with this method. The ionization energies and intensities were calculated, and the corresponding spectral bands were assigned. Natural bonding orbital (NBO) calculations were employed for better spectral band assignment. The calculated ionization energies and intensities reasonably produced the experimental photoelectron spectra.
机译:计算了高达20 eV的次黄嘌呤,黄嘌呤和咖啡因的紫外光电子光谱,并将其与文献报道的实验光谱进行了比较。使用一种称为量子SAC-CI的新型量子力学对称适应簇/构型相互作用(SAC-CI)方法进行了计算。此方法还使用了Duning / Huzinaga价双Zeta D95 +(d,p)高斯基集。计算电离能和强度,并指定相应的光谱带。使用自然键合轨道(NBO)计算可获得更好的光谱带分配。计算出的电离能和强度合理地产生了实验光电子能谱。

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