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Structure and magnetic properties of icosahedral PdxAg13−x (x = 0–13) clusters

机译:二十面体PdxAg13-x(x = 0-13)团簇的结构和磁性

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摘要

In this article, we present a modified Velocity-Verlet algorithm that makes cluster system converge rapidly and accurately. By combining it with molecular dynamics simulations, we develop an effective global sampling method for extracting isomers of bimetallic clusters. Using this method, we obtain the isomers of icosahedral PdxAg13−x (x = 0–13). Additionally, using the first-principle spin-polarized density functional theory approach, we find that each isomer still retains its icosahedral structure because of strong s-d orbital hybridization, and the cluster is more stable when a Pd atom is at the center of the cluster. With increasing x value, the magnetic moment decreases linearly from 5.0 μB at x = 0, until reaching zero at x = 5, and then increases linearly up to 8.0 μB at x = 13. By calculating the atom-projected density of states (PDOS), we reveal that the magnetic moment of PdxAg13−x mainly originates from s electrons of Ag when 0 ≤ x < 5, and d electrons of Pd when 5 < x ≤ 13. The PDOS results also show that the PdxAg13−x tends to transform from a semiconductor state to semi-metallic state when x gradually increases from 0 to 13.
机译:在本文中,我们提出了一种改进的Velocity-Verlet算法,该算法可使集群系统快速而准确地收敛。通过将其与分子动力学模拟相结合,我们开发了一种有效的全局采样方法来提取双金属簇的异构体。使用这种方法,我们获得了二十面体PdxAg13-x(x = 0-13)的异构体。此外,使用第一原理自旋极化密度泛函理论方法,我们发现由于强s-d轨道杂交,每个异构体仍保留其二十面体结构,并且当Pd原子位于簇中心时簇更加稳定。随着x值的增加,磁矩从x = 0处的5.0μB线性减小,直到x = 5处达到零,然后在x = 13处线性增大至8.0μB。通过计算原子投影态密度(PDOS ),我们发现PdxAg13-x的磁矩主要起源于0≤x <5时的s电子和5d

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