Literature DB >> 12889982

Bonding and electronic structure in consanguineous and conjugal iron and rhenium sp carbon chain complexes [MC4M'](n)+: computational analyses of the effect of the metal.

Haijun Jiao1, Karine Costuas, John A Gladysz, Jean-François Halet, Maud Guillemot, Loic Toupet, Frédéric Paul, Claude Lapinte.   

Abstract

Density functional theory has been used to probe the bonding and electronic properties of the homo- and heterobimetallic sp carbon chain complexes (ML(m), = (eta(5)-C(5)R(5))(eta(2)-R(2)PCH(2)CH(2)PR(2))Fe, (eta(5)-C(5)R(5))(NO)(PR(3))Re; z = 0-4). All neutral complexes are best described by MCtbd1;CCtbd1;CM electronic structures, in accord with much experimental data. The singlet dications are best described by cumulenic (+)M=C=C=C=C=M(+) valence formulations. However, the diiron and rhenium/iron dications are found to possess triplet states of nearly identical energy, clarifying experimental magnetic data. Their electronic structures have dominant *(+)MCtbd1;CCtbd1;CM(+)* character, with some spin delocalization onto the carbon chain. The mixed valence monocation radicals exhibit delocalized unpaired electrons, in accord with class III (strongly coupled) and II (weakly coupled) assignments made from experimental data earlier, with some spin density on the carbon chain. An isolable diiron trication has a doublet ground state, but some computational data suggest a close-lying quartet. For the unknown diiron tetracation, a bis(carbyne) or (2+)Fetbd1;CCtbd1;CCtbd1;Fe(2+) electronic structure is predicted. Calculated adiabatic ionization potentials show the iron endgroup to be more electron-releasing than rhenium, in accord with electrochemical data. This polarizes the electronic structures of the rhenium/iron complexes. To help validate the computed model structures, crystal structures of ((eta(5)-C(5)Me(5))Fe(eta(2)-dppe))(2)(mu-C(4)) and [((eta(5)-C(5)Me(5))Fe(eta(2)-dippe))(2)(mu-C(4))](3+) 3PF(6)(-) are determined. Data are analyzed with respect to related diruthenium and dimanganese complexes.

Entities:  

Year:  2003        PMID: 12889982     DOI: 10.1021/ja034619n

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


  2 in total

1.  Electronic structure of modelized vs. real carbon-chain containing organometallic dinuclear complexes: similarities and differences.

Authors:  Abdelkader Ladjarafi; Karine Costuas; Hacène Meghezzi; Jean-François Halet
Journal:  J Mol Model       Date:  2015-03-08       Impact factor: 1.810

2.  Electronic Communication in Binuclear Osmium- and Iridium-Polyhydrides.

Authors:  Lara Cancela; Miguel A Esteruelas; Javier Galbán; Montserrat Oliván; Enrique Oñate; Andrea Vélez; Juan C Vidal
Journal:  Inorg Chem       Date:  2021-02-05       Impact factor: 5.436

  2 in total

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