Literature DB >> 27731988

Examining the Effects of Ligand Variation on the Electronic Structure of Uranium Bis(imido) Species.

John J Kiernicki1, Maryline G Ferrier2, Juan S Lezama Pacheco3, Henry S La Pierre2, Benjamin W Stein2, Matthias Zeller1,4, Stosh A Kozimor2, Suzanne C Bart1.   

Abstract

Arylazide and diazene activation by highly reduced uranium(IV) complexes bearing trianionic redox-active pyridine(diimine) ligands, [CpPU(MesPDIMe)]2 (1-CpP), Cp*U(MesPDIMe)(THF) (1-Cp*) (CpP = 1-(7,7-dimethylbenzyl)cyclopentadienide; Cp* = η5-1,2,3,4,5-pentamethylcyclopentadienide), and Cp*U(tBu-MesPDIMe) (THF) (1-tBu) (2,6-((Mes)N═CMe)2-p-R-C5H2N, Mes = 2,4,6-trimethylphenyl; R = H, MesPDIMe; R = C(CH3)3, tBu-MesPDIMe), has been investigated. While 1-Cp* and 1-CpP readily reduce N3R (R = Ph, p-tolyl) to form trans-bis(imido) species, CpPU(NAr)2(MesPDIMe) (Ar = Ph, 2-CpP; Ar = p-Tol, 3-CpP) and Cp*U(NPh)2(MesPDIMe) (2-Cp*), only 1-Cp* can cleave diazene N═N double bonds to form the same product. Complexes 2-Cp*, 2-CpP, and 3-CpP are uranium(V) trans-bis(imido) species supported by neutral [MesPDIMe]0 ligands formed by complete oxidation of [MesPDIMe]3- ligands of 1-CpP and 1-Cp*. Variation of the arylimido substituent in 2-Cp* from phenyl to p-tolyl, forming Cp*U(NTol)2(MesPDIMe) (3-Cp*), changes the electronic structure, generating a uranium(VI) ion with a monoanionic pyridine(diimine) radical. The tert-butyl-substituted analogue, Cp*U(NTol)2(tBu-MesPDIMe) (3-tBu), displays the same electronic structure. Oxidation of the ligand radical in 3-Cp* and 3-tBu by Ag(I) forms cationic uranium(VI) [Cp*U(NTol)2(MesPDIMe)][SbF6] (4-Cp*) and [Cp*U(NTol)2(tBu-MesPDIMe)][SbF6] (4-tBu), respectively, as confirmed by metrical parameters. Conversely, oxidation of pentavalent 2-Cp* with AgSbF6 affords cationic [Cp*U(NPh)2(MesPDIMe)][SbF6] (5-Cp*) from a metal-based U(V)/U(VI) oxidation. All complexes have been characterized by multidimensional NMR spectroscopy with assignments confirmed by electronic absorption spectroscopy. The effective nuclear charge at uranium has been probed using X-ray absorption spectroscopy, while structural parameters of 1-CpP, 3-Cp*, 3-tBu, 4-Cp*, 4-tBu, and 5-Cp* have been elucidated by X-ray crystallography.

Entities:  

Year:  2016        PMID: 27731988     DOI: 10.1021/jacs.6b06989

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  4 in total

1.  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

2.  Insights into the Electronic Structure of a U(IV) Amido and U(V) Imido Complex.

Authors:  Luisa Köhler; Michael Patzschke; Stephen Bauters; Tonya Vitova; Sergei M Butorin; Kristina O Kvashnina; Moritz Schmidt; Thorsten Stumpf; Juliane März
Journal:  Chemistry       Date:  2022-03-14       Impact factor: 5.020

3.  Tantalum, easy as Pi: understanding differences in metal-imido bonding towards improving Ta/Nb separations.

Authors:  Alexander B Weberg; Subhajyoti Chaudhuri; Thibault Cheisson; Christian Uruburo; Ekaterina Lapsheva; Pragati Pandey; Michael R Gau; Patrick J Carroll; George C Schatz; Eric J Schelter
Journal:  Chem Sci       Date:  2022-05-12       Impact factor: 9.969

4.  Evidence for single metal two electron oxidative addition and reductive elimination at uranium.

Authors:  Benedict M Gardner; Christos E Kefalidis; Erli Lu; Dipti Patel; Eric J L McInnes; Floriana Tuna; Ashley J Wooles; Laurent Maron; Stephen T Liddle
Journal:  Nat Commun       Date:  2017-12-01       Impact factor: 14.919

  4 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.