Literature DB >> 26999632

Preparation and Protonation of Fe2(pdt)(CNR)6, Electron-Rich Analogues of Fe2(pdt)(CO)6.

Xiaoyuan Zhou1, Bryan E Barton1, Geoffrey M Chambers1, Thomas B Rauchfuss1, Federica Arrigoni2, Giuseppe Zampella2.   

Abstract

The complexes n class="Chemical">Fe2(pdt)(CNR)6 (pdt(2-) = CH2(CH2S(-))2) were prepared by thermal substitution of the hexacarbonyl complex with the isocyanides RNC for R = C6H4-4-OMe (1), C6H4-4-Cl (2), Me (3). These complexes represent electron-rich analogues of the parent Fe2(pdt)(CO)6. Unlike most substituted derivatives of Fe2(pdt)(CO)6, these isocyanide complexes are sterically unencumbered and have the same idealized symmetry as the parent hexacarbonyl derivatives. Like the hexacarbonyls, the stereodynamics of 1-3 involve both turnstile rotation of the Fe(CNR)3 as well as the inversion of the chair conformation of the pdt ligand. Structural studies indicate that the basal isocyanide has nonlinear CNC bonds and short Fe-C distances, indicating that they engage in stronger Fe-C π-backbonding than the apical ligands. Cyclic voltammetry reveals that these new complexes are far more reducing than the hexacarbonyls, although the redox behavior is complex. Estimated reduction potentials are E1/2 ≈ -0.6 ([2](+/0)), -0.7 ([1](+/0)), and -1.25 ([3](+/0)). According to DFT calculations, the rotated isomer of 3 is only 2.2 kcal/mol higher in energy than the crystallographically observed unrotated structure. The effects of rotated versus unrotated structure and of solvent coordination (THF, MeCN) on redox potentials were assessed computationally. These factors shift the redox couple by as much as 0.25 V, usually less. Compounds 1 and 2 protonate with strong acids to give the expected μ-hydrides [H1](+) and [H2](+). In contrast, 3 protonates with [HNEt3]BAr(F)4 (pKa(MeCN) = 18.7) to give the aminocarbyne [Fe2(pdt)(CNMe)5(μ-CN(H)Me)](+) ([3H](+)). According to NMR measurements and DFT calculations, this species adopts an unsymmetrical, rotated structure. DFT calculations further indicate that the previously described carbyne complex [Fe2(SMe)2(CO)3(PMe3)2(CCF3)](+) also adopts a rotated structure with a bridging carbyne ligand. Complex [3H](+) reversibly adds MeNC to give [Fe2(pdt)(CNR)6(μ-CN(H)Me)](+) ([3H(CNMe)](+)). Near room temperature, [3H](+) isomerizes to the hydride [(μ-H)Fe2(pdt)(CNMe)6](+) ([H3](+)) via a first-order pathway.

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Year:  2016        PMID: 26999632      PMCID: PMC4821816          DOI: 10.1021/acs.inorgchem.5b02789

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


  35 in total

1.  Generalized Gradient Approximation Made Simple.

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2.  Crystallographic characterization of a fully rotated, basic diiron dithiolate: model for the H(red) state?

Authors:  Wenguang Wang; Thomas B Rauchfuss; Curtis E Moore; Arnold L Rheingold; Luca De Gioia; Giuseppe Zampella
Journal:  Chemistry       Date:  2013-10-15       Impact factor: 5.236

3.  New Fe(I) -Fe(I) complex featuring a rotated conformation related to the [2 Fe](H) subsite of [Fe-Fe] hydrogenase.

Authors:  Sabrina Munery; Jean-François Capon; Luca De Gioia; Catherine Elleouet; Claudio Greco; François Y Pétillon; Philippe Schollhammer; Jean Talarmin; Giuseppe Zampella
Journal:  Chemistry       Date:  2013-10-14       Impact factor: 5.236

4.  Organometallic electrochemistry based on electrolytes containing weakly-coordinating fluoroarylborate anions.

Authors:  William E Geiger; Frédéric Barrière
Journal:  Acc Chem Res       Date:  2010-07-20       Impact factor: 22.384

5.  Generation of powerful tungsten reductants by visible light excitation.

Authors:  Wesley Sattler; Maraia E Ener; James D Blakemore; Aaron A Rachford; Paul J LaBeaume; James W Thackeray; James F Cameron; Jay R Winkler; Harry B Gray
Journal:  J Am Chem Soc       Date:  2013-07-15       Impact factor: 15.419

6.  Homoleptic isocyanidemetalates of 4d- and 5d-transition metals: [Nb(CNXyl)(6)](-), [Ta(CNXyl)(6)](-), and derivatives thereof.

Authors:  Mikhail V Barybin; William W Brennessel; Benjamin E Kucera; Mikhail E Minyaev; Victor J Sussman; Victor G Young; John E Ellis
Journal:  J Am Chem Soc       Date:  2007-02-07       Impact factor: 15.419

7.  Dissecting the intimate mechanism of cyanation of {2Fe3S} complexes related to the active site of all-iron hydrogenases by DFT analysis of energetics, transition states, intermediates and products in the carbonyl substitution pathway.

Authors:  Giuseppe Zampella; Maurizio Bruschi; Piercarlo Fantucci; Mathieu Razavet; Christopher J Pickett; Luca De Gioia
Journal:  Chemistry       Date:  2005-01-07       Impact factor: 5.236

8.  Series of mixed valent Fe(II)Fe(I) complexes that model the Hox state of [FeFe]hydrogenase: redox properties, density-functional theory investigation, and reactivities with extrinsic CO.

Authors:  Christine M Thomas; Tianbiao Liu; Michael B Hall; Marcetta Y Darensbourg
Journal:  Inorg Chem       Date:  2008-07-03       Impact factor: 5.165

9.  Oxo-bridged dinuclear chromium(III) complexes: correlation between the optical and magnetic properties and the basicity of the oxo bridge.

Authors:  Thorbjørn J Morsing; Jesper Bendix; Høgni Weihe; Anders Døssing
Journal:  Inorg Chem       Date:  2014-03-05       Impact factor: 5.165

10.  De novo design of synthetic di-iron(I) complexes as structural models of the reduced form of iron-iron hydrogenase.

Authors:  Jesse W Tye; Marcetta Y Darensbourg; Michael B Hall
Journal:  Inorg Chem       Date:  2006-02-20       Impact factor: 5.165

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  2 in total

1.  Electron-Rich, Diiron Bis(monothiolato) Carbonyls: C-S Bond Homolysis in a Mixed Valence Diiron Dithiolate.

Authors:  Qianli Li; Noémie Lalaoui; Toby J Woods; Thomas B Rauchfuss; Federica Arrigoni; Giuseppe Zampella
Journal:  Inorg Chem       Date:  2018-04-05       Impact factor: 5.165

2.  Synthetic Designs and Structural Investigations of Biomimetic Ni-Fe Thiolates.

Authors:  Debashis Basu; T Spencer Bailey; Noémie Lalaoui; Casseday P Richers; Toby J Woods; Thomas B Rauchfuss; Federica Arrigoni; Giuseppe Zampella
Journal:  Inorg Chem       Date:  2019-02-01       Impact factor: 5.165

  2 in total

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