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首页> 外文期刊>Bulletin of the Korean Chemical Society >Computational Study of 3-Aminophenol?¤(CO2)1 Cluster: CO2 Capture Ability of 3-Aminophenol
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Computational Study of 3-Aminophenol?¤(CO2)1 Cluster: CO2 Capture Ability of 3-Aminophenol

机译:3-氨基苯酚?(CO 2 1 团簇的计算研究:3-氨基苯酚的CO 2 捕获能力

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The structure of 3-aminophenol·(CO2)1 cluster was computationally studied both in the ground and the lowest singlet excited electronic states. The ground state structure and binding energy of the cluster was investigated using the secondorder Moller-Plesset perturbation theory (MP2) at the complete basis set (CBS) limit. The excited state geometry of the cluster was obtained at the second-order approximate coupled cluster (CC2) level with cc-pVDZ basis set, and the S0-S1 absorption spectrum was simulated by calculating Franck-Condon overlap integral. The ground state geometry of the global minimum with a very high binding energy of 4.3 kcal/mol was found for the cluster, due to the interaction between amino group and CO2 in addition to the strong ヰ-ヰ interaction between the aromatic ring and CO2. The excited state geometry shows a very big shift in the position of CO2 compared to the ground state geometry, which results in low intensity and broad envelope in the Franck-Condon simulation.
机译:通过计算研究了基态和最低单重态激发电子态下3-氨基苯酚·(CO 2 1 团簇的结构。使用二阶Moller-Plesset微扰理论(MP2)在完全基集(CBS)极限下研究了团簇的基态结构和结合能。在cc-pVDZ基集的二阶近似耦合簇(CC2)级别获得簇的激发态几何,并吸收S 0 -S 1 通过计算Franck-Condon重叠积分模拟光谱。对于簇,由于氨基和CO 2 之间的相互作用以及强的ヰ-the相互作用,发现簇的整体最小值具有4.3 kcal / mol的非常高的结合能。环与CO 2 之间的相互作用与基态几何形状相比,激发态几何形状显示CO 2 的位置发生了很大变化,这导致了Franck-Condon模拟中的低强度和宽包络。

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