| Literature DB >> 34705302 |
Matthieu Starck1, Jack D Fradgley1, Davide F De Rosa1, Andrei S Batsanov1, Maria Papa2, Michael J Taylor2, Janet E Lovett2, Jacob C Lutter3, Matthew J Allen3, David Parker1.
Abstract
A series of cationic and neutral p-Br and p-NO2 pyridine substituted Eu(III) and Gd(III) coordination complexes serve as versatile synthetic intermediates. Nucleophilic aromatic substitution occurs readily at the para position under mild conditions, allowing C-N and C-C bond forming reactions to take place, permitting the introduction of azide, amino and alkynyl substituents. For Eu(III) complexes, this approach allows late stage tuning of absorption and emission spectral properties, exemplified by the lowering of the energy of an LMCT transition accompanied by a reduction in the Eu-Npy bond length. Additionally, these complexes provide direct access to the corresponding Eu(II) analogues. With the Gd(III) series, the nature of the p-substituent does not significantly change the EPR properties (linewidth, relaxation times), as required for their development as EPR spin probes that can be readily conjugated to biomolecules under mild conditions.Entities:
Keywords: EPR; europium; gadolinium; luminescence
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Year: 2021 PMID: 34705302 PMCID: PMC8688332 DOI: 10.1002/chem.202103243
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236