Site-selective electronic correlation in α-plutonium metal

被引:64
|
作者
Zhu, Jian-Xin [1 ]
Albers, R. C. [1 ]
Haule, K. [2 ]
Kotliar, G. [2 ]
Wills, J. M. [1 ]
机构
[1] Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87545 USA
[2] Rutgers State Univ, Dept Phys & Astron, Piscataway, NJ 08854 USA
来源
NATURE COMMUNICATIONS | 2013年 / 4卷
关键词
DELTA-PU; STATE; COLLAPSE; SYSTEMS;
D O I
10.1038/ncomms3644
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
An understanding of the phase diagram of elemental plutonium (Pu) must include both, the effects of the strong directional bonding and the high density of states of the Pu 5f electrons, as well as how that bonding weakens under the influence of strong electronic correlations. Here we present electronic-structure calculations of the full 16-atom per unit cell alpha-phase structure within the framework of density functional theory together with dynamical mean-field theory. Our calculations demonstrate that Pu atoms sitting on different sites within the alpha-Pu crystal structure have a strongly varying site dependence of the localization-delocalization correlation effects of their 5f electrons and a corresponding effect on the bonding and electronic properties of this complicated metal. In short, alpha-Pu has the capacity to simultaneously have multiple degrees of electron localization/delocalization of Pu 5f electrons within a pure single-element material.
引用
收藏
页数:6
相关论文
共 50 条
  • [31] Site-selective artificial ribonucleases and their applications
    Kuzuya, Akinori
    Komiyama, Makoto
    CURRENT ORGANIC CHEMISTRY, 2007, 11 (16) : 1450 - 1459
  • [32] Site-selective protein glycation and PEGylation
    Salmaso, Stefano
    Semenzato, Alessandra
    Bersani, Sara
    Mastrotto, Francesca
    Scomparin, Anna
    Caliceti, Paolo
    EUROPEAN POLYMER JOURNAL, 2008, 44 (05) : 1378 - 1389
  • [33] Site-selective functionalization of carbon nanotubes
    Raghuveer, MS
    Kumar, A
    Frederick, MJ
    Louie, GP
    Ganesan, PG
    Ramanath, G
    ADVANCED MATERIALS, 2006, 18 (05) : 547 - +
  • [34] Site-Selective Modification of Proteins with Oxetanes
    Boutureira, Omar
    Martinez-Saez, Nuria
    Brindle, Kevin M.
    Neves, Andre A.
    Corzana, Francisco
    Bernardes, Goncalo J. L.
    CHEMISTRY-A EUROPEAN JOURNAL, 2017, 23 (27) : 6483 - 6489
  • [35] Site-selective DNA binding drugs
    Ebbinghaus, SW
    CHEMISTRY & BIOLOGY, 2003, 10 (10): : 895 - 897
  • [36] SITE-SELECTIVE ELECTRODE-REACTIONS
    TEMSEGHEN, W
    JENG, JJ
    CARRASQUILLO, A
    SORIAGAMP
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1995, 210 : 92 - COLL
  • [37] Site-selective modification of metallic nanoparticles
    Hoang, Khoi Nguyen L.
    McClain, Sophia M.
    Meyer, Sean M.
    Jalomo, Catherine A.
    Forney, Nathan B.
    Murphy, Catherine J.
    CHEMICAL COMMUNICATIONS, 2022, 58 (70) : 9728 - 9741
  • [38] Site-Selective Trifluoromethylation Reactions of Oligopeptides
    Guerrero, Itziar
    Correa, Arkaitz
    ASIAN JOURNAL OF ORGANIC CHEMISTRY, 2020, 9 (06) : 898 - 909
  • [39] Site-Selective Antibody Conjugation with Dibromopyrazines
    Szepesi Kovacs, Denes
    Pasztor, Bettina
    Abranyi-Balogh, Peter
    Petri, Laszlo
    Imre, Timea
    Simon, Jozsef
    Tatrai, Eniko
    Varady, Gyorgy
    Tovari, Jozsef
    Szijj, Peter A.
    Keseru, Gyorgy M.
    BIOCONJUGATE CHEMISTRY, 2024, 35 (09) : 1373 - 1379
  • [40] Site-selective protein conjugation at histidine
    Peciak, Karolina
    Laurine, Emmanuelle
    Tommasi, Rita
    Choi, Ji-won
    Brocchini, Steve
    CHEMICAL SCIENCE, 2019, 10 (02) : 427 - 439