Mohanta Manish Kumar, Jena Puru
Department of Physics, Virginia Commonwealth University, Richmond, Virginia 23284, United States.
J Phys Chem C Nanomater Interfaces. 2024 Jul 16;128(29):12286-12295. doi: 10.1021/acs.jpcc.4c03592. eCollection 2024 Jul 25.
Atomic clusters are known to exhibit properties different from their bulk phase. However, when assembled or supported on substrates, clusters often lose their uniqueness. For example, uranium and coinage metals (Cu, Ag, Au) are nonmagnetic in their bulk. Herein, we show that UX (X= Cu, Ag, Au) clusters, unlike their nonmagnetic bulk, are not only magnetic but also retain their magnetic character and structure when assembled into a two-dimensional (2D) material. The magnetic moment remains localized at the U site and is found to be 3μ in clusters and about 2μ in the 2D structure. In 2D UX (X = Cu, Ag, Au) monolayers, U atoms are found to be coupled antiferromagnetically through an indirect exchange coupling mediated by the coinage metal atoms. Furthermore, hydrogenation of these monolayers can induce a transition from the antiferromagnetic to the ferromagnetic phase. These results, based on density functional theory, have predictive capability and can motivate experiments.
已知原子团簇表现出与其体相不同的性质。然而,当在基底上组装或负载时,团簇常常会失去其独特性。例如,铀和货币金属(铜、银、金)在其体相中是非磁性的。在此,我们表明,与它们的非磁性体相不同,UX(X = 铜、银、金)团簇不仅具有磁性,而且在组装成二维(2D)材料时还能保持其磁性特征和结构。磁矩仍局域在U位点,在团簇中为3μ,在二维结构中约为2μ。在二维UX(X = 铜、银、金)单层中,发现U原子通过货币金属原子介导的间接交换耦合反铁磁耦合。此外,这些单层的氢化可以诱导从反铁磁相到铁磁相的转变。这些基于密度泛函理论的结果具有预测能力,并能推动实验研究。