Literature DB >> 22218724

Recent advances on the chemistry of transition metal complexes of 2-(arylazo)pyridines and its arylamino derivatives.

Subhas Samanta1, Pradip Ghosh, Sreebrata Goswami.   

Abstract

Recent advancement on the redox properties of a selection of transition metal complexes of the azoaromatic ligands: bidentate L(1) [2-(arylazo)pyridine] and tridentate HL(2) [2-(aminoarylphenylazo)pyridine] are described and compared. Due to the presence of a low lying azo-centered π*-orbital, these azoaromatic ligands may exist in multiple valent states. The coordination chemistry of the L(1) ligands was thoroughly studied during the 1980s. These complexes undergo facile reduction in solution at low accessible potentials. One electron reduced azo-complexes, though known for a long time to occur in solution, have only recently been isolated in a crystalline state. New synthetic protocols for the synthesis of metal-bound azo-radical complexes have been developed. Low-valent metal complexes such as metal carbonyls have been found to be excellent starting materials for this purpose. In a few selected cases, syntheses of these complexes were also achieved from very high valent metal oxides using triphenylphosphine as both a reducing and oxo-abstracting agent. Issues related to the ambiguities of the electronic structures in the azo-metal complexes have been discussed considering bond parameters, redox and spectral properties. Unusual redox events such as RIET (Redox-Induced Electron Transfer) phenomena in a few systems have been elaborated and compared with the known example. Novel examples of N=N bond cleavage reactions via four-electron reduction and subsequent C-N bond formation in metal-bound coordinated ligands have been noted.

Entities:  

Year:  2012        PMID: 22218724     DOI: 10.1039/c2dt10986g

Source DB:  PubMed          Journal:  Dalton Trans        ISSN: 1477-9226            Impact factor:   4.390


  4 in total

1.  Azo-triazolide bis-cyclometalated Ir(iii) complexes via cyclization of 3-cyanodiarylformazanate ligands.

Authors:  Ge Mu; Zhili Wen; Judy I-Chia Wu; Thomas S Teets
Journal:  Dalton Trans       Date:  2019-11-27       Impact factor: 4.390

2.  Robust resistive memory devices using solution-processable metal-coordinated azo aromatics.

Authors:  Sreetosh Goswami; Adam J Matula; Santi P Rath; Svante Hedström; Surajit Saha; Meenakshi Annamalai; Debabrata Sengupta; Abhijeet Patra; Siddhartha Ghosh; Hariom Jani; Soumya Sarkar; Mallikarjuna Rao Motapothula; Christian A Nijhuis; Jens Martin; Sreebrata Goswami; Victor S Batista; T Venkatesan
Journal:  Nat Mater       Date:  2017-10-23       Impact factor: 43.841

3.  Electrochemistry, chemical reactivity, and time-resolved infrared spectroscopy of donor-acceptor systems [(Q(x))Pt(pap(y))] (Q = substituted o-quinone or o-iminoquinone; pap = phenylazopyridine).

Authors:  Naina Deibel; David Schweinfurth; Stephan Hohloch; Milan Delor; Igor V Sazanovich; Michael Towrie; Julia A Weinstein; Biprajit Sarkar
Journal:  Inorg Chem       Date:  2014-01-08       Impact factor: 5.165

4.  Neutral Formazan Ligands Bound to the fac-(CO)3Re(I) Fragment: Structural, Spectroscopic, and Computational Studies.

Authors:  Liliana Capulín Flores; Lucas A Paul; Inke Siewert; Remco Havenith; Noé Zúñiga-Villarreal; Edwin Otten
Journal:  Inorg Chem       Date:  2022-08-15       Impact factor: 5.436

  4 in total

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