Literature DB >> 29749729

Redox-Active vs Redox-Innocent: A Comparison of Uranium Complexes Containing Diamine Ligands.

Scott A Pattenaude1, Kimberly C Mullane2, Eric J Schelter2, Maryline G Ferrier3, Benjamin W Stein3, Sharon E Bone3, Juan S Lezama Pacheco4, Stosh A Kozimor3, Phillip E Fanwick1, Matthias Zeller1,5, Suzanne C Bart1.   

Abstract

Uranium complexes (MesDAE)2U(THF) (1-DAE) and Cp2U(MesDAE) (2-DAE) (MesDAE = [ArN-CH2CH2-NAr]; Ar = 2,4,6-trimethylphenyl (Mes)), bearing redox-innocent diamide ligands, have been synthesized and characterized for a full comparison with previously published, redox-active diimine complexes, (MesDABMe)2U(THF) (1-DAB) and Cp2U(MesDABMe) (2-DAB) (MesDABMe = [ArN═C(Me)C(Me)═NAr]; Ar = Mes). These redox-innocent analogues maintain an analogous steric environment to their redox-active ligand counterparts to facilitate a study aimed at determining the differing electronic behavior around the uranium center. Structural analysis by X-ray crystallography showed 1-DAE and 2-DAE have a structural environment very similar to 1-DAB and 2-DAB, respectively. The main difference occurs with coordination of the ene-backbone to the uranium center in the latter species. Electronic absorption spectroscopy reveals these new DAE complexes are nearly identical to each other. X-ray absorption spectroscopy suggests all four species contain +4 uranium ions. The data also indicates that there is an electronic difference between the bis(diamide)-THF uranium complexes as opposed to those that only contain one diamide and two cyclopentadienyl rings. Finally, magnetic measurements reveal that all complexes display temperature-dependent behavior consistent with uranium(IV) ions that do not include ligand radicals. Overall, this study determines that there is no significant bonding difference between the redox-innocent and redox-active ligand frameworks on uranium. Furthermore, there are no data to suggest covalent bonding character using the latter ligand framework on uranium, despite what is known for transition metals.

Entities:  

Year:  2018        PMID: 29749729     DOI: 10.1021/acs.inorgchem.8b00663

Source DB:  PubMed          Journal:  Inorg Chem        ISSN: 0020-1669            Impact factor:   5.165


  3 in total

1.  The coordination chemistry of CmIII, AmIII, and AcIII in nitrate solutions: an actinide L3-edge EXAFS study.

Authors:  Maryline G Ferrier; Benjamin W Stein; Sharon E Bone; Samantha K Cary; Alexander S Ditter; Stosh A Kozimor; Juan S Lezama Pacheco; Veronika Mocko; Gerald T Seidler
Journal:  Chem Sci       Date:  2018-08-01       Impact factor: 9.825

2.  Actinyl-Carboxylate Complexes [AnO2(COOH) n (H2O) m ]2-n (An = U, Np, Pu, and Am; n = 1-3; m = 0, 2, 4; 2n + m = 6): Electronic Structures, Interaction Features, and the Potential to Adsorbents toward Cs Ion.

Authors:  Peng Li; Hao Wei; Meigang Duan; Jizhou Wu; Yuqing Li; Wenliang Liu; Yongming Fu; Feng Xie; Yong Wu; Jie Ma
Journal:  ACS Omega       Date:  2020-12-03

3.  Exploring the Redox Properties of Bench-Stable Uranyl(VI) Diamido-Dipyrrin Complexes.

Authors:  Karlotta van Rees; Emma K Hield; Ambre Carpentier; Laurent Maron; Stephen Sproules; Jason B Love
Journal:  Inorg Chem       Date:  2022-02-07       Impact factor: 5.165

  3 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.