Literature DB >> 24559053

Re(I) complexes of substituted dppz: a computational and spectroscopic study.

Holly van der Salm1, Michael G Fraser, Raphael Horvath, Scott A Cameron, Jonathan E Barnsley, Xue-Zhong Sun, Michael W George, Keith C Gordon.   

Abstract

A series of dipyrido[3,2-a:2',3'-c]phenazine (dppz)-based ligands with electron-withdrawing substituents and their [Re(CO)3(L)Cl] and [Re(CO)3(L)(py)]PF6 complexes have been studied using Raman, resonance Raman, and transient resonance Raman (TR(2)) and time-resolved infrared (TRIR) spectroscopic techinques in conjunction with computational chemistry as well as electrochemical studies, emission, and absorption of ground and excited states. DFT (B3LYP) frequency calculations show good agreement with nonresonant Raman spectra, which allowed these to be used to identify phenanthroline, phenazine, and delocalized modes. These band assignments were used to establish the nature of chromophores active in resonance Raman spectra, probed with wavelengths between 350.7 and 457.9 nm. X-ray crystallography of [Re(CO)3(dppzBr2)Cl] and [Re(CO)3(dppzBr)(py)]PF6 showed these crystallize in space groups triclinic P1 and monoclinic P2(1/n), respectively. Electrochemical studies showed that substituents have a strong effect on the phenazine MO, changing the reduction potential by 200 mV. Transient absorption studies showed that generally the [Re(CO)3(L)(py)]PF6 complexes had longer lifetimes than the corresponding [Re(CO)3(L)Cl] complexes; the probed state is likely to be (3)π → π* (phz) in nature. TR(2) spectra of the ligands provided a marker for the triplet π → π* state, and the TR(2) spectra of the complexes suggest an intraligand (IL) π,π* state for [Re(CO)3(L)(py)](+) complexes, and a potentially mixed IL/MLCT state for [Re(CO)3(L)Cl] complexes. TRIR spectroscopy is more definitive with THEXI state assignments, and analysis of the metal-carbonyl region (1800-2100 cm(-1)) on the picosecond and nanosecond time scales indicates the formation of MLCT(phen/phz) states for all [Re(CO)3(L)Cl] complexes, and IL π → π* (phen) states for all [Re(CO)3(L)(py)](+) complexes, with all but [Re(CO)3(dppzBr(CF3))(py)](+) showing some contribution from an MLCT(phen) state also.

Entities:  

Year:  2014        PMID: 24559053     DOI: 10.1021/ic403056g

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


  4 in total

1.  enantio-Enriched CPL-active helicene-bipyridine-rhenium complexes.

Authors:  Nidal Saleh; Monika Srebro; Thibault Reynaldo; Nicolas Vanthuyne; Loïc Toupet; Victoria Y Chang; Gilles Muller; J A Gareth Williams; Christian Roussel; Jochen Autschbach; Jeanne Crassous
Journal:  Chem Commun (Camb)       Date:  2015-03-04       Impact factor: 6.222

2.  Optically Controlled Electron Transfer in a ReI Complex.

Authors:  Egmont J Rohwer; Yan Geng; Maryam Akbarimoosavi; Latévi M Lawson Daku; Olivier Aleveque; Eric Levillain; Jürg Hauser; Andrea Cannizzo; Robert Häner; Silvio Decurtins; Robert J Stanley; Thomas Feurer; Shi-Xia Liu
Journal:  Chemistry       Date:  2021-02-24       Impact factor: 5.020

3.  Computational Design of Rhenium(I) Carbonyl Complexes for Anticancer Photodynamic Therapy.

Authors:  Daniel Álvarez; M Isabel Menéndez; Ramón López
Journal:  Inorg Chem       Date:  2021-12-16       Impact factor: 5.165

4.  Chromophore-Functionalized Phenanthro-diimine Ligands and Their Re(I) Complexes.

Authors:  Kristina S Kisel; Toni Eskelinen; Waqar Zafar; Anastasia I Solomatina; Pipsa Hirva; Elena V Grachova; Sergey P Tunik; Igor O Koshevoy
Journal:  Inorg Chem       Date:  2018-05-11       Impact factor: 5.165

  4 in total

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