Literature DB >> 26544548

Cyclo-P₃ Complexes of Vanadium: Redox Properties and Origin of the ³¹P NMR Chemical Shift.

Balazs Pinter1,2, Kyle T Smith3, Masahiro Kamitani3, Eva M Zolnhofer4, Ba L Tran3, Skye Fortier3, Maren Pink1, Gang Wu5, Brian C Manor3, Karsten Meyer4, Mu-Hyun Baik1,6, Daniel J Mindiola3.   

Abstract

The synthesis and characterization of two high-valent vanadium-cyclo-P3 complexes, (nacnac)V(cyclo-P3)(Ntolyl2) (1) and (nacnac)V(cyclo-P3)(OAr) (2), and an inverted sandwich derivative, [(nacnac)V(Ntolyl2)]2(μ2-η(3):η(2)-cyclo-P3) (3), are presented. These novel complexes are prepared by activating white phosphorus (P4) with three-coordinate vanadium(II) precursors. Structural metrics, redox behavior, and DFT electronic structure analysis indicate that a [cyclo-P3](3-) ligand is bound to a V(V) center in monomeric species 1 and 2. A salient feature of these new cyclo-P3 complexes is their significantly downfield shifted (by ∼300 ppm) (31)P NMR resonances, which is highly unusual compared to related complexes such as (Ar[(i)Pr]N)3Mo(cyclo-P3) (4) and other cyclo-P3 complexes that display significantly upfield shifted resonances. This NMR spectroscopic signature was thus far thought to be a diagnostic property for the cyclo-P3 ligand related to its acute endocyclic angle. Using DFT calculations, we scrutinized and conceptualized the origin of the unusual chemical shifts seen in this new class of complexes. Our analysis provides an intuitive rational paradigm for understanding the experimental (31)P NMR spectroscopic signature by relating the nuclear magnetic shielding with the electronic structure of the molecule, especially with the characteristics of metal-cyclo-P3 bonding.

Entities:  

Year:  2015        PMID: 26544548     DOI: 10.1021/jacs.5b10074

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


  3 in total

1.  Conversion of E4 (E4 =P4 , As4 , AsP3 ) by Ni(0) and Ni(I) Synthons - A Comparative Study.

Authors:  Maria Haimerl; Christian Graßl; Michael Seidl; Martin Piesch; Manfred Scheer
Journal:  Chemistry       Date:  2021-11-23       Impact factor: 5.020

2.  Influence of the nacnac Ligand in Iron(I)-Mediated P4 Transformations.

Authors:  Fabian Spitzer; Christian Graßl; Gábor Balázs; Eva M Zolnhofer; Karsten Meyer; Manfred Scheer
Journal:  Angew Chem Int Ed Engl       Date:  2016-02-29       Impact factor: 15.336

3.  Nacnac-Cobalt-Mediated P4 Transformations.

Authors:  Fabian Spitzer; Christian Graßl; Gábor Balázs; Eric Mädl; Martin Keilwerth; Eva M Zolnhofer; Karsten Meyer; Manfred Scheer
Journal:  Chemistry       Date:  2017-01-25       Impact factor: 5.236

  3 in total

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