Literature DB >> 17031972

Neutral and zwitterionic low-coordinate titanium complexes bearing the terminal phosphinidene functionality. Structural, spectroscopic, theoretical, and catalytic studies addressing the Ti-P multiple bond.

Guangyu Zhao1, Falguni Basuli, Uriah J Kilgore, Hongjun Fan, Halikhedkar Aneetha, John C Huffman, Gang Wu, Daniel J Mindiola.   

Abstract

Alpha-hydrogen abstraction and alpha-hydrogen migration reactions yield novel titanium(IV) complexes bearing terminal phosphinidene ligands. Via an alpha-H migration reaction, the phosphinidene ((tBu)nacnac)Ti=P[Trip](CH(2)(tBu) ((tBu)nacnac(-) = [Ar]NC((t)Bu)CHC((t)Bu)N[Ar], Ar = 2,6-(CHMe2)(2C6H3, Trip = 2,4,6-(i)Pr3C6H2) was prepared by the addition of the primary phosphide LiPH[Trip] to the nucleophilic alkylidene triflato complex ((tBu)nacnac)Ti=CH(t)Bu(OTf), while alpha-H abstraction was promoted by the addition of LiPH[Trip] to the dimethyl triflato precursor ((tBu)nacnac)Ti(CH)(2)(OTf) to afford ((tBu)nacnac)Ti=P[Trip](CH3). Treatment of ((tBu)nacnac)Ti=P[Trip](CH3) with B(C6F5)(3) induces methide abstraction concurrent with formation of the first titanium(IV) phosphinidene zwitterion complex ((tBu)nacnac)Ti=P[Trip]{CH3B(C6F5)(3)}. Complex ((tBu)nacnac)Ti=P[Trip]{CH3B(C6F5)(3)} [2 + 2] cycloadds readily PhCCPh to afford the phosphametallacyclobutene [((tBu)nacnac)Ti(P[Trip]PhCCPh)][CH3B(C6F5)(3)]. These titanium(IV) phosphinidene complexes possess the shortest Ti=P bonds reported, have linear phosphinidene groups, and reveal significantly upfielded solution 31P NMR spectroscopic resonances for the phosphinidene phosphorus. Solid state 31P NMR spectroscopic data also corroborate with all three complexes possessing considerably shielded chemical shifts for the linear and terminal phosphinidene functionality. In addition, high-level DFT studies on the phosphinidenes suggest the terminal phosphinidene linkage to be stabilized via a pseudo Ti[triple bond]P bond. Linearity about the Ti-P-C(ipso) linkage is highly dependent on the sterically encumbering substituents protecting the phosphinidene. Complex ((tBu)nacnac)Ti=P[Trip]{CH3B(C6F5))(3)} can catalyze the hydrophosphination of PhCCPh with H(2)PPh to produce the secondary vinylphosphine HP[Ph]PhC=CHPh. In addition, we demonstrate that this zwitterion is a powerful phospha-Staudinger reagent and can therefore act as a carboamination precatalyst of diphenylacetylene with aldimines.

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Year:  2006        PMID: 17031972     DOI: 10.1021/ja064853o

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


  6 in total

1.  Macrocyclic Binucleating β-Diketiminate Ligands and their Lithium, Aluminum, and Zinc Complexes.

Authors:  Javier Vela; Liwei Zhu; Christine J Flaschenriem; William W Brennessel; Rene J Lachicotte; Patrick L Holland
Journal:  Organometallics       Date:  2007       Impact factor: 3.876

2.  Terminal Parent Phosphanide and Phosphinidene Complexes of Zirconium(IV).

Authors:  Hannah Stafford; Thomas M Rookes; Elizabeth P Wildman; Gábor Balázs; Ashley J Wooles; Manfred Scheer; Stephen T Liddle
Journal:  Angew Chem Int Ed Engl       Date:  2017-05-26       Impact factor: 15.336

3.  A selective route to aryl-triphosphiranes and their titanocene-induced fragmentation.

Authors:  André Schumann; Fabian Reiß; Haijun Jiao; Jabor Rabeah; Jan-Erik Siewert; Ivo Krummenacher; Holger Braunschweig; Christian Hering-Junghans
Journal:  Chem Sci       Date:  2019-07-30       Impact factor: 9.825

4.  Metal free oxidation of vinamidine derivatives: a simple synthesis of α-keto-β-diimine ligands.

Authors:  Monika Tripathi; Vianney Regnier; Zakaria Ziani; Marc Devillard; Christian Philouze; David Martin
Journal:  RSC Adv       Date:  2018-11-14       Impact factor: 3.361

Review 5.  Broken Promises? On the Continued Challenges Faced in Catalytic Hydrophosphination.

Authors:  Samantha Lau; Thomas M Hood; Ruth L Webster
Journal:  ACS Catal       Date:  2022-08-22       Impact factor: 13.700

6.  Iron- and Cobalt-Catalyzed Synthesis of Carbene Phosphinidenes.

Authors:  Kuntal Pal; Oliver B Hemming; Benjamin M Day; Thomas Pugh; David J Evans; Richard A Layfield
Journal:  Angew Chem Int Ed Engl       Date:  2015-12-08       Impact factor: 15.336

  6 in total

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