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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Ab Initio MR-CISD Study of Gas-Phase Basicity of Formamide in the First Excited Singlet State
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Ab Initio MR-CISD Study of Gas-Phase Basicity of Formamide in the First Excited Singlet State

机译:从头开始进行MR-CISD研究第一个激发单重态甲酰胺的气相碱度

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摘要

MR-CISD and MR-CISD+Q calculations have been carried out to investigate geometries,energies,and electronic absorption spectra of formamide and its O-and N-protonated forms.The vertical excitation energies for formamide are in good agreement with available experimental data and with the results of best calculations reported so far.Analysis of the calculated electronic absorption spectra reveals that the lowest excited state in the parent molecule and in its N-protonated form corresponds to the n-pi~* valence excited state,whereas the O-protonated form shows the pi-pi~* excited valence state as the lowest one.The second excited valence states in the neutral molecule and the N-protonated ion are the pi-pi~* state,whereas it is the n-pi* state for the O-protonated formamide.Adiabatic excitation energies are reported for the first excited valence state of all three species with structures optimized at the MR-CISD level.All structures exhibit strong deviation from planarity characterized by pyramidalization of the C and the N atoms and rotation of the NH_2 with respect to the plane of the COH group.It appears that oxygen is the most basic site of formamide both in the ground state and in the first singlet excited state.Its calculated gas-phase basicity(GB)and proton affinity(PA)in the latter are smaller than in the ground state by 2.1 kcal mol~(-1)and 2.4 kcal mol~(-1),respectively.The difference in basicity between oxygen and nitrogen positions drops from 16 kcal mol~(-1)(ground state)to 6 kcal mol~(-1)(first singlet excited state).These results are analyzed within the Forster thermodynamic cycle.
机译:进行了MR-CISD和MR-CISD + Q计算以研究甲酰胺及其O和N质子化形式的几何形状,能量和电子吸收光谱。甲酰胺的垂直激发能与现有实验数据高度吻合对计算得到的电子吸收光谱的分析表明,母体分子及其N质子化形式的最低激发态与n-pi〜*价激发态相对应,而O质子化形式显示pi-pi〜*激发价态为最低价。中性分子和N质子化离子中的第二个激发价态为pi-pi〜*态,其中n-pi *报道了三个物种的第一激发价态的绝热激发能,其结构在MR-CISD水平上进行了优化,所有结构均表现出与平面度的强烈偏离,其特征在于C和N原子的锥体化和NH_2相对于COH基团的平面旋转。在基态和第一个单重态激发态下,氧似乎都是甲酰胺的最基本位点。后者的相碱性(GB)和质子亲和力(PA)分别比基态小2.1 kcal mol〜(-1)和2.4 kcal mol〜(-1)。氮的位置从16 kcal mol〜(-1)(基态)下降到6 kcal mol〜(-1)(第一单重激发态)。在Forster热力学循环中分析了这些结果。

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