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  1. Home
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  4. Journal Articles - Architecture and Construction
  5. Journal Articles - Architecture and Construction - 2023
  6. Formation of pyramidal structures through mixing gold and platinum atoms: the AuxPty2+ clusters with x + y = 10†
 
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Formation of pyramidal structures through mixing gold and platinum atoms: the AuxPty2+ clusters with x + y = 10†

Journal
Royal Society of Chemistry
ISSN
32893-32903
Date Issued
2023
Author(s)
Bao Ngan Nguyen Ha, Cam Tu Phan Dang, Long Van Duong, My Phuong Pham Ho, Minh Tho Nguyen, Nguyen Minh Tam
Abstract
The geometric and electronic structures of a small series of mixed gold and platinum AuxPty2+ clusters, with x + y = 10, were investigated using quantum chemical methods. A consistent tetrahedral pyramid structure emerges, displaying two patterns of structural growth by a notable critical point at y = 5. This affects the clusters' electron population, chemical bonding, and stability. For the Pt-doped Au clusters with y values from 2 to 5, the bonds enable Pt atoms to assemble into symmetric line, triangle, quadrangle, and tetragonal pyramidal Pty blocks, respectively. For the Au-doped Pt clusters, with larger values of y > 5, the structures are more relaxed and the d electrons of Pt atoms become delocalized over more centers, leading to lower symmetry structures. A certain aromaticity arising from delocalization of d electrons over the multi-center framework in the doped Pt clusters contributes to their stability, with Pt102+ at y = 10 exhibiting the highest stability. While the ground electronic state of the neutral platinum atom [Xe]. 4f145d96s1 leads to a triplet state (3D3), the total magnetic moments of AuxPty2+ are large increasing steadily from 0 to 10 μB and primarily located on Pt atoms, corresponding to the increase of the number of Pt atoms from 0 to 10 and significantly enhancing the magnetic moments. An admixture of both Au and Pt atoms thus emerges as an elegant way of keeping a small pyramidal structure but bringing in a high and controllable magnetic moment.
Subjects
  • Formation

  • pyramidal structures

  • platinum atoms

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