A series of heterobimetallic complexes of general structure [RhL2-{h5-(2-ferrocenyl)indenyl}] (L2=cod, nbd,L =CO; cod=cyclooctadiene; nbd=norbornadiene) has been synthesised with the aim of tuning the metal–metal interaction in their mixedvalence ions generated both by chemical and electrochemical oxidation,and the results are compared with those obtained for [RhL2{h5-(1-ferrocenyl)indenyl}] isomers. Crystallographic studies and DFT calculations provide a detailed description of the structural and electronic features of these complexes evidencing a significant difference in the extent of planarity of the flexible bridging ligand between the 1- and 2- ferrocenyl isomers. Independent experimental probes,in particular the potential splitting in the cyclic voltammograms and the IT bands in the near-IR spectra,are rationalised in the framework of Marcus–Hush theory and at quantum chemistry level by DFT and TD-DFT methods. These methods allow us to establish a trend based on the magnitude of iron–rhodium electronic coupling Hab ranging from valence trapped to almost delocalised ions. The quasi planar bridge and the olefin ancillary ligands make [Rh(nbd)-{h5-(2-ferrocenyl)indenyl}]+ and [Rh- (cod){h5-(2-ferrocenyl)indenyl}]+ rare examples of heterobimetallic systems which can be classified as borderline Class II/Class III species.

Tuning the electronic communication in heterobimetallic mixed-valence ions of (1-ferrocenyl) and (2-ferrocenyl)indenyl rhodium isomers

Benetollo F;Crociani L;
2007

Abstract

A series of heterobimetallic complexes of general structure [RhL2-{h5-(2-ferrocenyl)indenyl}] (L2=cod, nbd,L =CO; cod=cyclooctadiene; nbd=norbornadiene) has been synthesised with the aim of tuning the metal–metal interaction in their mixedvalence ions generated both by chemical and electrochemical oxidation,and the results are compared with those obtained for [RhL2{h5-(1-ferrocenyl)indenyl}] isomers. Crystallographic studies and DFT calculations provide a detailed description of the structural and electronic features of these complexes evidencing a significant difference in the extent of planarity of the flexible bridging ligand between the 1- and 2- ferrocenyl isomers. Independent experimental probes,in particular the potential splitting in the cyclic voltammograms and the IT bands in the near-IR spectra,are rationalised in the framework of Marcus–Hush theory and at quantum chemistry level by DFT and TD-DFT methods. These methods allow us to establish a trend based on the magnitude of iron–rhodium electronic coupling Hab ranging from valence trapped to almost delocalised ions. The quasi planar bridge and the olefin ancillary ligands make [Rh(nbd)-{h5-(2-ferrocenyl)indenyl}]+ and [Rh- (cod){h5-(2-ferrocenyl)indenyl}]+ rare examples of heterobimetallic systems which can be classified as borderline Class II/Class III species.
2007
CHIMICA INORGANICA E DELLE SUPERFICI
Istituto di Chimica della Materia Condensata e di Tecnologie per l'Energia - ICMATE
electron transfer
ferrocene
mixed-valent ompounds
rhodium
File in questo prodotto:
File Dimensione Formato  
prod_18367-doc_11421.pdf

non disponibili

Descrizione: Tuning the electronic communication in heterobimetallic mixed-valence ions of (1-ferrocenyl) and (2-ferrocenyl)indenyl rhodium isomers
Dimensione 520.3 kB
Formato Adobe PDF
520.3 kB Adobe PDF   Visualizza/Apri   Richiedi una copia

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/163715
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 39
  • ???jsp.display-item.citation.isi??? 37
social impact