Literature DB >> 17845034

Spectroscopic and computational studies of a Ru(II) terpyridine complex: the importance of weak intermolecular forces to photophysical properties.

Claudio Garino1, Roberto Gobetto, Carlo Nervi, Luca Salassa, Edward Rosenberg, J B Alexander Ross, Xi Chu, Kenneth I Hardcastle, Cristiana Sabatini.   

Abstract

The complex [Ru(tpy)(CO)(2)TFA]+[PF(6)]- (where tpy = 2,2':6',2' '-terpyridine and TFA = CF(3)CO(2)-) (1) has been synthesized and fully characterized spectroscopically. The X-ray structure of the complex has been determined. The photopysical properties of the ruthenium complex and the free ligand tpy have been investigated at room temperature and at 77 K in acetonitrile solution and in the solid state. Their electronic spectra are highly influenced by intermolecular stacking interactions, both in solution and in the solid state. Density functional theory (DFT) and time-dependent DFT (TDDFT) calculations have been performed to characterize the electronic structure and the excited states of [Ru(tpy)(CO)(2)TFA]+[PF(6)]- and tpy. TDDFT calculations on three different conformations of free ligand have been performed as well. Absorption and emission spectra of tpy have been studied at different temperatures and concentrations in order to have a better understanding of this ruthenium derivative's properties. The absorption spectrum of 1 is characterized by metal-perturbed ligand-centered (LC) bands in the UV region. No metal-to-ligand charge transfer (MLCT) bands are observed in the visible for the complex. Only at high concentrations (10(-4) M) does a very weak band appear at 470 nm. At 77 K and low concentrations, solutions of 1 exhibit a major 3LC emission band centered at 468 nm (21.4 x 10(-3) cm(-1)). When the concentration of the complex is increased, an unstructured narrow emission at 603 nm (16.6 x 10(-3) cm(-1)), with a lifetime of 10 micros, dominates the emission spectrum in glassy acetonitrile. This emission originates from a pi-pi stacked dimeric (or oligomeric) species. TDDFT calculations performed on a tail-to-tail dimer structure, similar to that seen in the solid state, ascribe the transition to a triplet excited state, where intermolecular metal (d) --> ligand (pi*, polypyridine) charge transfer occurs. A good estimate of the transition energy is also obtained (623 nm, 1.94 eV).

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Year:  2007        PMID: 17845034     DOI: 10.1021/ic7010343

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


  3 in total

1.  Tuning photophysical properties with ancillary ligands in Ru(II) mono-diimine complexes.

Authors:  Ayesha Sharmin; Reuben C Darlington; Kenneth I Hardcastle; Mauro Ravera; Edward Rosenberg; J B Alexander Ross
Journal:  J Organomet Chem       Date:  2008-11-30       Impact factor: 2.369

2.  Trans,trans,trans-[PtIV(N3)2(OH)2(py)(NH3)]: a light-activated antitumor platinum complex that kills human cancer cells by an apoptosis-independent mechanism.

Authors:  Aron F Westendorf; Julie A Woods; Katharina Korpis; Nicola J Farrer; Luca Salassa; Kim Robinson; Virginia Appleyard; Karen Murray; Renate Grünert; Alastair M Thompson; Peter J Sadler; Patrick J Bednarski
Journal:  Mol Cancer Ther       Date:  2012-06-18       Impact factor: 6.261

3.  Synthesis and evaluation of new salicylaldehyde-2-picolinylhydrazone Schiff base compounds of Ru(II), Rh(III) and Ir(III) as in vitro antitumor, antibacterial and fluorescence imaging agents.

Authors:  Narasinga Rao Palepu; S L Nongbri; J Richard Premkumar; Akalesh Kumar Verma; Kaushik Bhattacharjee; S R Joshi; Scott Forbes; Yurij Mozharivskyj; Romita Thounaojam; K Aguan; Mohan Rao Kollipara
Journal:  J Biol Inorg Chem       Date:  2015-02-25       Impact factor: 3.358

  3 in total

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