DFT study of the structural and electronic properties of small Nin (n=2-4) clusters

被引:0
|
作者
Cisneros, GA
Castro, M [1 ]
Salahub, DR
机构
[1] Natl Autonomous Univ Mexico, Fac Quim, Dept Fis & Quim Teor, Mexico City 04510, DF, Mexico
[2] Univ Montreal, Dept Chim, Montreal, PQ H3C 3J7, Canada
关键词
small nickel clusters; DFT calculations; ionization potentials; electron affinities; magnetic properties;
D O I
10.1002/(SICI)1097-461X(1999)75:4/5<847::AID-QUA50>3.0.CO;2-Y
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
All-electron calculations were performed for Ni-2, Ni-3, and Ni-4 clusters and their respective anions and cations using density functional theory techniques as implemented in the DGauss code. Both local and generalized gradient-corrected functionals were employed. Three different multiplicities were examined for each cluster (M = 3, 5, and 7). The calculated ground states were found to have multiplicities of M = 3 for Ni-2: and Ni-3 and M = 5 for Ni-4 with associated magnetic moments per atom of 1.0 mu(B) for Ni-2 and Ni-4, while Ni-3 shows an isotropic magnetic distribution. The cluster magnetization is enhanced relative to that of the bulk, which is in qualitative agreement with experimental data for clusters larger than 50 atoms. For these smallest Ni, clusters, there is a mixture of 3d and 4s bonding. The 3d(4s) contribution to the bonding decreases (increases) going from n = 2 to n = 4, which is reflected by the larger equilibrium bond lengths of Ni-4, as compared to that of Ni-2. The frontier molecular orbitals, the so-called HOMO and LUMO, were studied; they provide insight into the reactivity of these small particles. We also determined the lowest-energy states of anions, Ni-n(-), and cations, Ni-n(+). The calculated ionization potentials and electron affinities are in reasonable agreement with experimental observations as well as with other reported theoretical results. (C) 1999 John Wiley & Sons, Inc.
引用
收藏
页码:847 / 861
页数:15
相关论文
共 50 条
  • [11] Electronic structure and stability of AlnPn (n=2-4) clusters
    Qu, YH
    Bian, XF
    JOURNAL OF COMPUTATIONAL CHEMISTRY, 2005, 26 (03) : 226 - 234
  • [12] Magnetic and electronic properties of the nickel clusters Nin (n ≤ 30)
    Song, Wei
    Lu, Wen-Cai
    Wang, C. Z.
    Ho, K. M.
    COMPUTATIONAL AND THEORETICAL CHEMISTRY, 2011, 978 (1-3) : 41 - 46
  • [13] Structure, Stability, Electronic and Magnetic Properties of FemBin (m + n = 2–4) Clusters: A DFT Study
    Selvarengan Paranthaman
    Nirmala Vedamanickam
    Mahendiraprabu Ganesan
    Suresh Sampathkumar
    Russian Journal of Physical Chemistry A, 2022, 96 : 2466 - 2475
  • [14] Structures, stabilities, electronic and magnetic properties of small RhxMny (x + y=2-4) clusters
    Srivastava, Ambrish Kumar
    Misra, Neeraj
    COMPUTATIONAL AND THEORETICAL CHEMISTRY, 2014, 1047 : 1 - 5
  • [15] Decrypting the Structural, Electronic and Spectroscopic Properties of GeMgn+(n=2-12) Clusters: A DFT Study
    Liao, Yan-Hua
    Guo, Jia
    Deng, Ping-Ji
    Dai, Wei
    Zeng, Lu
    Zhu, Ben-Chao
    JOURNAL OF CLUSTER SCIENCE, 2022, 33 (03) : 1093 - 1101
  • [16] Structural, electronic, thermodynamic and spectral properties of Mgn (n=2-31) clusters. A DFT study
    Belyaev, Sergey N.
    Panteleev, Sergey V.
    Ignatov, Stanislav K.
    Razuvaev, Alexey G.
    COMPUTATIONAL AND THEORETICAL CHEMISTRY, 2016, 1079 : 34 - 46
  • [17] Electronic and Magnetic Properties of Small RhnCa (n=1-9) Clusters: A DFT Study
    Soltani, Abdelhamid
    Boudjahem, Abdel-Ghani
    Bettahar, Mohammed
    INTERNATIONAL JOURNAL OF QUANTUM CHEMISTRY, 2016, 116 (05) : 346 - 356
  • [18] Electronic and Structural Properties of Neutral, Anionic, and Cationic RhxCu4−x (x = 0–4) Small Clusters: A DFT Study
    A. Arab
    F. Gobal
    N. Nahali
    M. Nahali
    Journal of Cluster Science, 2013, 24 : 273 - 287
  • [19] Structural and electronic properties of small neutral (MgO)(n) clusters
    delaPuente, E
    Aguado, A
    Ayuela, A
    Lopez, JM
    PHYSICAL REVIEW B, 1997, 56 (12): : 7607 - 7614
  • [20] Structural, electronic, thermodynamic and optical properties of SnlSemSn clusters: A DFT study
    Kashyap, Shilpa
    Batra, Kriti
    CHEMICAL PHYSICS, 2022, 558