Mejía-López José, García Griselda, Romero Aldo H
Facultad de Física, Pontificia Universidad Católica de Chile, Casilla 306, Santiago 22, Chile.
J Chem Phys. 2009 Jul 28;131(4):044701. doi: 10.1063/1.3187031.
The physical, structural, and chemical properties of bimetallic Pt(12-n)Cu(n) clusters, where n goes from 0 to 12, have been investigated within density functional theory. We find that the electronic and magnetic properties depend a lot on the atomic fraction of Cu atoms, mainly as the number of Cu atoms changes from even to odd. The chemical potential increases monotonically as a function of the Cu concentration, whereas other chemical properties such as electrophilicity depend on local changes and decreases monotonically, as well as the ionization potential. The hardness has an oscillatory behavior, which depends on the total number of electrons. The reactivity has been spatially analyzed by studying the highest occupied molecular orbital and lowest unoccupied molecular orbital. Charge delocalization is largely increased by the number of copper atoms, whereas for largely Pt concentrations, the charge is more atomiclike. That charge dependence gives another cluster outside view, which shows a rich spatial reactivity. The magnetic dependence of the cluster on the Cu atom concentration opens the door to potential chemistry applications on bimetallic magnetic nanostructures in the field of spintronics.
利用密度泛函理论研究了双金属Pt(12 - n)Cu(n)团簇(其中n从0到12)的物理、结构和化学性质。我们发现,电子和磁性性质很大程度上取决于铜原子的原子分数,主要是随着铜原子数从偶数变为奇数。化学势随铜浓度单调增加,而其他化学性质如亲电性则取决于局部变化并单调下降,电离势也是如此。硬度呈现振荡行为,这取决于电子总数。通过研究最高占据分子轨道和最低未占据分子轨道对反应活性进行了空间分析。电荷离域随着铜原子数的增加而大幅增强,而对于高铂浓度情况,电荷更类似原子电荷。这种电荷依赖性给出了团簇的另一种外部视角,显示出丰富的空间反应活性。团簇对铜原子浓度的磁性依赖性为自旋电子学领域中双金属磁性纳米结构的潜在化学应用打开了大门。