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Toward a realistic density functional theory potential energy surface for the H_5~+ cluster

机译:朝向H_5〜+团簇的逼真的密度泛函理论势能面

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摘要

The potential energy surface of H_5~+ is characterized using density functional theory. The hypersurface is evaluated at selected configurations employing different functionals, and compared with results obtained from ab initio CCSD(T) calculations. The lowest ten stationary points (minima and saddle-points) on the surface are located, and the features of the short-, intermediate-, and long-range intermolecular interactions are also investigated. A detailed analysis of the surface's topology, and comparisons with extensive CCSD(T) results, as well as a recent ab initio analytical surface, shows that density functional theory calculations using the B3(H) functional represent very well all aspects studied on the H_5~+ potential. These include the tiny energy difference between the minimum at 1 -C_(2v) configuration and the 2 D_(2d) one corresponding to the transition state for the proton transfer between the two equivalent C_(2v) minima, and also the correct asymptotic behavior of the long-range interactions. The calculated binding energy and dissociation enthalpies compare very well with previous benchmark coupled-cluster ab initio data, and with experimental data available. Based on these results the use of such approach to perform first-principles molecular dynamics simulations could provide reliable information regarding the dynamics of protonated hydrogen clusters.
机译:利用密度泛函理论表征了H_5〜+的势能面。在采用不同功能的选定配置下评估超曲面,并将其与从头算CCSD(T)计算获得的结果进行比较。确定了表面上最低的十个固定点(最小和鞍点),并且还研究了短,中和远程分子间相互作用的特征。对表面拓扑的详细分析以及与大量CCSD(T)结果的比较,以及最近的从头算起的分析表面,表明使用B3(H)泛函的密度泛函理论计算很好地表示了在H_5上研究的所有方面〜+潜力。其中包括在1 -C_(2v)构型的最小值与对应于两个等效C_(2v)最小值之间质子转移的过渡状态的2 D_(2d)之间的微小能量差,以及正确的渐近行为远程交互作用。计算出的结合能和解离焓与以前的基准偶联簇从头算数据和可用的实验数据相比非常好。基于这些结果,使用这种方法执行第一性原理的分子动力学模拟可以提供有关质子化氢簇动力学的可靠信息。

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