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Efficient EOM-CC-based Protocol for the Calculation of Electron Affinity of Solvated Nucleobases: Uracil as a Case Study

机译:基于高效的基于EOM-CC的协议,用于计算溶剂化核碱基的电子亲和力:URACIL作为案例研究

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We present an explicit solvation protocol for the calculation of electron affinity values of the solvated nucleobases. The protocol uses a quantum mechanics/molecular mechanics (QM/MM) approach based on the newly implemented domain-based pair natural orbital EOM-CCSD (equation-of-motion coupled-cluster single–double) method. The stability of the solvated nucleobase anion is sensitive to the local distribution of the water molecules around the nucleobase, and the calculated electron affinity values converge slowly with respect to the number of snapshots and the size of the water box. The use of nonpolarizable water molecules leads to an overestimation of the electron affinity and makes the result sensitive to the size of the QM region in the QM/MM calculation. The electron affinity values, although sensitive to the size of the basis set, lead to an almost constant blue shift of the electron affinity upon the increase in the basis set. The present protocol allows for a controllable description of the various parameters affecting the electron affinity value, and the calculated adiabatic electron affinity values are in excellent agreement with experimental results.
机译:我们提出了一个明确的溶剂化协议,用于计算溶剂化碱基的电子亲和值。该协议使用量子力学/分子力学(QM/MM)方法,基于新实现的基于领域的对自然轨道EOM-CCSD(运动方程耦合簇单-双)方法。溶剂化核碱阴离子的稳定性对核碱周围水分子的局部分布很敏感,计算的电子亲和性值相对于快照的数量和水盒的大小缓慢收敛。使用非极性水分子会导致高估电子亲和力,并使结果对QM/MM计算中QM区域的大小敏感。电子亲和性值虽然对基集的大小敏感,但随着基集的增加,电子亲和性几乎会发生恒定的蓝移。本协议允许对影响电子亲和度值的各种参数进行可控描述,并且计算的绝热电子亲和度值与实验结果非常一致。

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