Literature DB >> 12167048

The electronic influence of ring substituents and ansa bridges in zirconocene complexes as probed by infrared spectroscopic, electrochemical, and computational studies.

Cary E Zachmanoglou1, Arefa Docrat, Brian M Bridgewater, Gerard Parkin, Christopher G Brandow, John E Bercaw, Christian N Jardine, Mark Lyall, Jennifer C Green, Jerome B Keister.   

Abstract

The electronic influence of unbridged and ansa-bridged ring substituents on a zirconocene center has been studied by means of IR spectroscopic, electrochemical, and computational methods. With respect to IR spectroscopy, the average of the symmetric and asymmetric stretches (nu(CO(av))) of a large series of dicarbonyl complexes (Cp(R))(2)Zr(CO)(2) has been used as a probe of the electronic influence of a cyclopentadienyl ring substituent. For unbridged substituents (Me, Et, Pr(i), Bu(t), SiMe(3)), nu(CO(av)) on a per substituent basis correlates well with Hammett sigma(meta) parameters, thereby indicating that the influence of these substituents is via a simple inductive effect. In contrast, the reduction potentials (E degrees ) of the corresponding dichloride complexes (Cp(R))(2)ZrCl(2) do not correlate well with Hammett sigma(meta) parameters, thereby suggesting that factors other than the substituent inductive effect also influence E degrees. Ansa bridges with single-atom linkers, for example [Me(2)C] and [Me(2)Si], exert a net electron-withdrawing effect, but the effect is diminished upon increasing the length of the bridge. Indeed, with a linker comprising a three-carbon chain, the [CH(2)CH(2)CH(2)] ansa bridge becomes electron-donating. In contrast to the electron-withdrawing effect observed for a single [Me(2)Si] ansa bridge, a pair of vicinal [Me(2)Si] ansa bridges exerts an electron-donating effect relative to that from the single bridge. DFT calculations demonstrate that the electron-withdrawing effect of the [Me(2)C] and [Me(2)Si] ansa-bridges is due to stabilization of the cyclopentadienyl ligand acceptor orbital, which subsequently enhances back-donation from the metal. The calculations also indicate that the electron-donating effect of two vicinal [Me(2)Si] ansa bridges, relative to that of a single bridge, is a result of it enforcing a ligand conformation that reduces back-donation from the metal.

Entities:  

Year:  2002        PMID: 12167048     DOI: 10.1021/ja020236y

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


  6 in total

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Authors:  Melanie Chiu; Helen M Hoyt; Forrest E Michael; Robert G Bergman; Herman van Halbeek
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2.  Relation between topology and stability of bent titanocenes.

Authors:  Hugo Felix Lima dos Santos; Daniel de L Pontes; Caio L Firme
Journal:  J Mol Model       Date:  2013-04-05       Impact factor: 1.810

3.  Synthesis, Structure, and Conformational Dynamics of Rhodium and Iridium Complexes of Dimethylbis(2-pyridyl)borate.

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Journal:  Polyhedron       Date:  2014-12-14       Impact factor: 3.052

4.  Synthesis of Site-specific Charged Metallopolymers via Reversible Addition-Fragmentation Chain Transfer (RAFT) Polymerization.

Authors:  Ye Sha; Tianyu Zhu; Anisur Rahman; Yujin Cha; Jihyeon Hwang; Zhenyang Luo; Chuanbing Tang
Journal:  Polymer (Guildf)       Date:  2019-12-17       Impact factor: 4.430

5.  Silicon-Carbon bond cleavage reactions of Ansa tungstenocene compounds: the [Me2Si] bridge as a site for metallocene functionalization.

Authors:  Cary E Zachmanoglou; Hyosun Lee; Seung Ho Jang; Keliang Pang; Gerard Parkin
Journal:  Proc Natl Acad Sci U S A       Date:  2008-07-17       Impact factor: 11.205

6.  Electrochemical studies of tris(cyclopentadienyl)thorium and uranium complexes in the +2, +3, and +4 oxidation states.

Authors:  Justin C Wedal; Jeffrey M Barlow; Joseph W Ziller; Jenny Y Yang; William J Evans
Journal:  Chem Sci       Date:  2021-05-07       Impact factor: 9.825

  6 in total

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