Uncovering Heavy Actinide Covalency: Implications for Minor Actinide Partitioning

被引:30
作者
Chandrasekar, Aditi [1 ]
Ghanty, Tapan K. [2 ,3 ]
机构
[1] Indira Gandhi Ctr Atom Res, Homi Bhabha Natl Inst, Kalpakkam 603102, Tamil Nadu, India
[2] Bhabha Atom Res Ctr, Chem Grp, Theoret Chem Sect, Mumbai 400085, Maharashtra, India
[3] Homi Bhabha Natl Inst, Training Sch Complex, Mumbai 400094, Maharashtra, India
关键词
ENERGY DECOMPOSITION ANALYSIS; RAY-ABSORPTION SPECTROSCOPY; LIQUID-LIQUID-EXTRACTION; K-EDGE XAS; ELECTRONIC-STRUCTURE; TRIVALENT LANTHANIDE; QUANTUM-CHEMISTRY; 2ND DERIVATIVES; SEPARATION; COMPLEXES;
D O I
10.1021/acs.inorgchem.8b03358
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Across the actinide period, the stability of the trivalent oxidation state predominates in the heavy actinides, making their chemical nature close to that of rare earth elements. The resemblance in their chemistry poses difficulties in separating heavy actinides from lanthanides, which is a vital separation in the minor actinide partitioning process. Actinide contraction has conventionally implied electrostatic actinide-ligand interactions among the heavy actinides. The present study challenges this conventional understanding and reveals increasing covalency in the actinide-ligand bond across Am to Cf. Complexes of Am, Cm, Bk, and Cf have been examined for their electronic structure with a focus on the nature of their interactions with different ligands within the framework of density functional theory, where the relativistic effects have been incorporated by using zero-order regular approximation and spin-orbit coupling. The choice of ligands selected for this study facilitates the effect of the donor atom as well as denticity to be accounted for. Hence, heavy actinide complexes of the N- and 0-donor ligand dipicolinic acid, S and 0 mixed donor ligands of the Cyanex type, and an octadentate ligand N,N,N'N'-tetrakis[(6-carboxypyridin-2-yl)methyl]ethylenediamine have been optimized and evaluated. In each case energy decomposition analysis has been used to explicitly decompose the metal ligand interaction energy into components which have then been analyzed. Irrespective of the hard soft characteristics of donor atoms or the denticity of the ligands, steadily increased covalency has been observed across Am to Cf. Inspection of the ligand highest energy occupied molecular orbitals and metal orbitals sheds light on the origin of the unexpected covalency. An overall increase in bonding and also the orbital contribution along the Am Cf series is clearly due to the enhancement in covalency, which is complementary to the orbital degeneracy induced covalency proposed very recently by Batista and co-workers.
引用
收藏
页码:3744 / 3753
页数:10
相关论文
共 75 条
[1]   Utilizing electronic effects in the modulation of BTPhen ligands with respect to the partitioning of minor actinides from lanthanides [J].
Afsar, Ashfaq ;
Laventine, Dominic M. ;
Harwood, Laurence M. ;
Hudson, Michael J. ;
Geist, Andreas .
CHEMICAL COMMUNICATIONS, 2013, 49 (76) :8534-8536
[2]  
[Anonymous], ANGEW CHEM
[3]   Aqueous Partitioning of Minor Actinides by Different Processes [J].
Ansari, Seraj A. ;
Pathak, Priyanath ;
Mohapatra, Prashanta K. ;
Manchanda, Vijay K. .
SEPARATION AND PURIFICATION REVIEWS, 2011, 40 (01) :43-76
[4]   An implementation of the coupled perturbed Kohn-Sham equations: Perturbation due to nuclear displacements [J].
Berces, A ;
Dickson, RM ;
Fan, LY ;
Jacobsen, H ;
Swerhone, D ;
Ziegler, T .
COMPUTER PHYSICS COMMUNICATIONS, 1997, 100 (03) :247-262
[5]  
Bettencourt-Dias A., 2012, ENCY INORGANIC BIOIN, DOI [10.1002/9781119951438.eibc2009, DOI 10.1002/9781119951438.EIBC2009]
[6]   Selective Americium(III) Complexation by Dithiophosphinates: A Density Functional Theoretical Validation for Covalent Interactions Responsible for Unusual Separation Behavior from Trivalent Lanthanides [J].
Bhattacharyya, Arunasis ;
Ghanty, Tapan Kumar ;
Mohapatra, Prasanta Kumar ;
Manchanda, Vijay Kumar .
INORGANIC CHEMISTRY, 2011, 50 (09) :3913-3921
[7]   Complexation of Actinide(III) and Lanthanide(III) with H4TPAEN for a Separation of Americium from Curium and Lanthanides [J].
Boubals, Nathalie ;
Wagner, Christoph ;
Dumas, Thomas ;
Chaneac, Lea ;
Manie, Gabriel ;
Kaufholz, Peter ;
Marie, Cecile ;
Panak, Petra J. ;
Modolo, Giuseppe ;
Geist, Andreas ;
Guilbaud, Philippe .
INORGANIC CHEMISTRY, 2017, 56 (14) :7861-7869
[8]   Relevance of Orbital Interactions and Pauli Repulsion in the Metal-Metal Bond of Coinage Metals [J].
Brands, Maria B. ;
Nitsch, Jorn ;
Guerra, Celia Fonseca .
INORGANIC CHEMISTRY, 2018, 57 (05) :2603-2608
[9]   Accurate quantum chemical modelling of the separation of Eu3+ from Am3+/Cm3+ by liquid-liquid extraction with Cyanex272 [J].
Cao, Xiaoyan ;
Zhang, Jun ;
Weissmann, Daniel ;
Dolg, Michael ;
Chen, Xuebo .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2015, 17 (32) :20605-20616
[10]   First-Principles Study of the Separation of AmIII/CmIII from EuIII with Cyanex301 [J].
Cao, Xiaoyan ;
Heidelberg, Daniel ;
Ciupka, Jan ;
Dolg, Michael .
INORGANIC CHEMISTRY, 2010, 49 (22) :10307-10315