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The effects of electronic structure and charged state on thermodynamic properties: An ab initio molecular dynamics investigations on neutral and charged clusters of Na-39, Na-40, and Na-41

机译:电子结构和带电状态对热力学性质的影响:Na-39,Na-40和Na-41的中性和带电团簇的从头算分子动力学研究

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In this paper we explore the effects of the electronic structure, the charge state, and the nature of energy distribution of isomers on the thermodynamic properties of sodium clusters. The focus of the work is to isolate the effects of these ingredients on thermodynamic behavior by choosing specific clusters. Toward this end we investigate Na-39(-), Na-40, and Na-41(+), which are the electronic closed shell systems which differ in number of atoms and charge state. We also examine Na-39, Na-39(+), Na-40(+), and Na-41 clusters having different charges of these clusters. Our density functional molecular dynamics simulations show that all electronic shell-closing clusters have similar melting temperature of approximate to 310 K. Remarkably, it is observed that an addition of even one electron to Na-39 increases the melting temperature by about 40 K and makes the specific heat curve sharper. All the cationic clusters show broadened specific heat curves. (c) 2008 American Institute of Physics.
机译:在本文中,我们探索了电子结构,电荷状态和异构体能量分布的性质对钠团簇热力学性质的影响。工作的重点是通过选择特定的簇来隔离这些成分对热力学行为的影响。为此,我们研究了Na-39(-),Na-40和Na-41(+),它们是原子数和电荷态不同的电子闭合壳系统。我们还研究了具有不同电荷的Na-39,Na-39(+),Na-40(+)和Na-41簇。我们的密度泛函分子动力学模拟表明,所有电子关闭壳团簇的熔化温度都接近310K。值得注意的是,观察到,即使向Na-39中添加一个电子,熔化温度也会增加约40 K,并且比热曲线更锐利。所有阳离子簇均显示出较宽的比热曲线。 (c)2008年美国物理研究所。

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