Cargando…

Red Light Absorption of [Re(I)(CO)(3)(α-diimine)Cl] Complexes through Extension of the 4,4′-Bipyrimidine Ligand’s π-System

Rhenium(I) complexes of type [Re(CO)(3)(NN)Cl] (NN = α-diimine) with MLCT absorption in the orange-red region of the visible spectrum have been synthesized and fully characterized, including single crystal X-ray diffraction on two complexes. The strong bathochromic shift of MLCT absorption was achie...

Descripción completa

Detalles Bibliográficos
Autores principales: Meitinger, Nicolas, Mandal, Subrata, Sorsche, Dieter, Pannwitz, Andrea, Rau, Sven
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9964139/
https://www.ncbi.nlm.nih.gov/pubmed/36838893
http://dx.doi.org/10.3390/molecules28041905
_version_ 1784896428678578176
author Meitinger, Nicolas
Mandal, Subrata
Sorsche, Dieter
Pannwitz, Andrea
Rau, Sven
author_facet Meitinger, Nicolas
Mandal, Subrata
Sorsche, Dieter
Pannwitz, Andrea
Rau, Sven
author_sort Meitinger, Nicolas
collection PubMed
description Rhenium(I) complexes of type [Re(CO)(3)(NN)Cl] (NN = α-diimine) with MLCT absorption in the orange-red region of the visible spectrum have been synthesized and fully characterized, including single crystal X-ray diffraction on two complexes. The strong bathochromic shift of MLCT absorption was achieved through extension of the π-system of the electron-poor bidiazine ligand 4,4′-bipyrimidine by the addition of fused phenyl rings, resulting in 4,4′-biquinazoline. Furthermore, upon anionic cyclization of the twisted bidiazine, a new 4N-doped perylene ligand, namely, 1,3,10,12-tetraazaperylene, was obtained. Electrochemical characterization revealed a significant stabilization of the LUMO in this series, with the first reduction of the azaperylene found at [Formula: see text] = −1.131 V vs. Fc(+)/Fc, which is the most anodic half-wave potential observed for N-doped perylene derivatives so far. The low LUMO energies were directly correlated to the photophysical properties of the respective complexes, resulting in a strongly red-shifted MLCT absorption band in chloroform with a λ(max) = 586 nm and high extinction coefficients (ε(586nm) > 5000 M(−1) cm(−1)) ranging above 700 nm in the case of the tetraazaperylene complex. Such low-energy MLCT absorption is highly unusual for Re(I) α-diimine complexes, for which these bands are typically found in the near UV. The reported 1,3,10,12-tetraazaperylene complex displayed the [Re(CO)(3)(α-diimine)Cl] complex with the strongest MLCT red shift ever reported. UV–Vis NIR spectroelectrochemical investigations gave further insights into the nature and stability of the reduced states. The electron-poor ligands explored herein open up a new path for designing metal complexes with strongly red-shifted absorption, thus enabling photocatalysis and photomedical applications with low-energy, tissue-penetrating red light in future.
format Online
Article
Text
id pubmed-9964139
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-99641392023-02-26 Red Light Absorption of [Re(I)(CO)(3)(α-diimine)Cl] Complexes through Extension of the 4,4′-Bipyrimidine Ligand’s π-System Meitinger, Nicolas Mandal, Subrata Sorsche, Dieter Pannwitz, Andrea Rau, Sven Molecules Article Rhenium(I) complexes of type [Re(CO)(3)(NN)Cl] (NN = α-diimine) with MLCT absorption in the orange-red region of the visible spectrum have been synthesized and fully characterized, including single crystal X-ray diffraction on two complexes. The strong bathochromic shift of MLCT absorption was achieved through extension of the π-system of the electron-poor bidiazine ligand 4,4′-bipyrimidine by the addition of fused phenyl rings, resulting in 4,4′-biquinazoline. Furthermore, upon anionic cyclization of the twisted bidiazine, a new 4N-doped perylene ligand, namely, 1,3,10,12-tetraazaperylene, was obtained. Electrochemical characterization revealed a significant stabilization of the LUMO in this series, with the first reduction of the azaperylene found at [Formula: see text] = −1.131 V vs. Fc(+)/Fc, which is the most anodic half-wave potential observed for N-doped perylene derivatives so far. The low LUMO energies were directly correlated to the photophysical properties of the respective complexes, resulting in a strongly red-shifted MLCT absorption band in chloroform with a λ(max) = 586 nm and high extinction coefficients (ε(586nm) > 5000 M(−1) cm(−1)) ranging above 700 nm in the case of the tetraazaperylene complex. Such low-energy MLCT absorption is highly unusual for Re(I) α-diimine complexes, for which these bands are typically found in the near UV. The reported 1,3,10,12-tetraazaperylene complex displayed the [Re(CO)(3)(α-diimine)Cl] complex with the strongest MLCT red shift ever reported. UV–Vis NIR spectroelectrochemical investigations gave further insights into the nature and stability of the reduced states. The electron-poor ligands explored herein open up a new path for designing metal complexes with strongly red-shifted absorption, thus enabling photocatalysis and photomedical applications with low-energy, tissue-penetrating red light in future. MDPI 2023-02-16 /pmc/articles/PMC9964139/ /pubmed/36838893 http://dx.doi.org/10.3390/molecules28041905 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Meitinger, Nicolas
Mandal, Subrata
Sorsche, Dieter
Pannwitz, Andrea
Rau, Sven
Red Light Absorption of [Re(I)(CO)(3)(α-diimine)Cl] Complexes through Extension of the 4,4′-Bipyrimidine Ligand’s π-System
title Red Light Absorption of [Re(I)(CO)(3)(α-diimine)Cl] Complexes through Extension of the 4,4′-Bipyrimidine Ligand’s π-System
title_full Red Light Absorption of [Re(I)(CO)(3)(α-diimine)Cl] Complexes through Extension of the 4,4′-Bipyrimidine Ligand’s π-System
title_fullStr Red Light Absorption of [Re(I)(CO)(3)(α-diimine)Cl] Complexes through Extension of the 4,4′-Bipyrimidine Ligand’s π-System
title_full_unstemmed Red Light Absorption of [Re(I)(CO)(3)(α-diimine)Cl] Complexes through Extension of the 4,4′-Bipyrimidine Ligand’s π-System
title_short Red Light Absorption of [Re(I)(CO)(3)(α-diimine)Cl] Complexes through Extension of the 4,4′-Bipyrimidine Ligand’s π-System
title_sort red light absorption of [re(i)(co)(3)(α-diimine)cl] complexes through extension of the 4,4′-bipyrimidine ligand’s π-system
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9964139/
https://www.ncbi.nlm.nih.gov/pubmed/36838893
http://dx.doi.org/10.3390/molecules28041905
work_keys_str_mv AT meitingernicolas redlightabsorptionofreico3adiimineclcomplexesthroughextensionofthe44bipyrimidineligandspsystem
AT mandalsubrata redlightabsorptionofreico3adiimineclcomplexesthroughextensionofthe44bipyrimidineligandspsystem
AT sorschedieter redlightabsorptionofreico3adiimineclcomplexesthroughextensionofthe44bipyrimidineligandspsystem
AT pannwitzandrea redlightabsorptionofreico3adiimineclcomplexesthroughextensionofthe44bipyrimidineligandspsystem
AT rausven redlightabsorptionofreico3adiimineclcomplexesthroughextensionofthe44bipyrimidineligandspsystem