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首页> 外文期刊>International Journal of Quantum Chemistry >Ab Initio Study on (CO2)(n) Clusters via Electrostatics- and Molecular Tailoring-Based Algorithm
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Ab Initio Study on (CO2)(n) Clusters via Electrostatics- and Molecular Tailoring-Based Algorithm

机译:通过基于静电和分子剪裁的算法从头算研究(CO2)(n)团簇

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摘要

An algorithm based on molecular electrostatic potential (MESP) and molecular tailoring approach (MTA) for building energetically favorable molecular clusters is presented. This algorithm is tested on prototype (CO2)(n) clusters with n = 13, 20, and 25 to explore their structure, energetics, and properties. The most stable clusters in this series are seen to show more number of triangular motifs. Many-body energy decomposition analysis performed on the most stable clusters reveals that the 2-body is the major contributor (>96%) to the total interaction energy. Vibrational frequencies and molecular electrostatic potentials are also evaluated for these large clusters through MTA. The MTA-based MESPs of these clusters show a remarkably good agreement with the corresponding actual ones. The most intense MTA-based normal mode frequencies are in fair agreement with the actual ones for smaller clusters. These calculated asymmetric stretching frequencies are blue-shifted with reference to the CO, monomer.
机译:提出了一种基于分子静电势(MESP)和分子剪裁法(MTA)的构建能量上有利的分子簇的算法。该算法在n = 13、20和25的原型(CO2)(n)簇上进行了测试,以探索其结构,能量学和性质。该系列中最稳定的簇显示出更多的三角形图案。在最稳定的簇上进行的多体能量分解分析表明,2体是总相互作用能的主要贡献者(> 96%)。还通过MTA对这些大型簇的振动频率和分子静电势进行了评估。这些集群的基于MTA的MESP与相应的实际MSP显示出非常好的一致性。基于MTA的最高强度的正常模式频率与较小群集的实际频率基本一致。这些计算出的不对称拉伸频率相对于CO单体发生了蓝移。

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