Synthesis and Crystallographic Characterization of Heteroleptic Ir(III) Complexes Containing the N-oxide Functional Group and Crystallographic Characterization of Ir(III) N-oxide Precursors

dc.contributor.authorStumbo, Emily E.en
dc.contributor.authorHodge, Emarald K.en
dc.contributor.authorWilliams, Matthewen
dc.contributor.authorThornton, Diana A.en
dc.contributor.authorMcMillen, Colin D.en
dc.contributor.authorPienkos, Jared A.en
dc.date.accessioned2024-03-27T18:23:21Zen
dc.date.available2024-03-27T18:23:21Zen
dc.date.issued2024-03-16en
dc.date.updated2024-03-27T13:15:52Zen
dc.description.abstractThe <i>N</i>-oxide functional group has been exploited for synthetic strategies and drug design, and it has been utilized in imaging agents. Herein, we present rare examples of neutral heteroleptic cyclometallated Ir(III) compounds that contain an uncoordinated <i>N</i>-oxide functional group. These species, along with others described within, were verified by NMR, EA, HRMS, and single-crystal X-ray analysis. <i>N</i>-oxide-containing Ir(III) species were prepared selectively in high yields &gt; 66% from chloro-bridged Ir(III) dimers with Acipimox, a picolinate-type ligand containing the <i>N</i>-oxide functional group. Non-<i>N</i>-oxide analogs were synthesized in a similar fashion (yields &gt; 77%). Electrochemical comparison (cyclic voltammetry) indicates that the presence of an <i>N</i>-oxide functional group anodically shifts the reduction potential, suggesting that the <i>N</i>-oxide is acting as an electron-withdrawing group in these species. Crystallographic studies were pursued to examine the coordination behavior of these <i>N</i>-oxides compared to their non-oxidized congeners. The Ir(III) complexes with Acipimox indeed leave the <i>N</i>-oxide uncoordinated and exposed on the complexes. The uncoordinated <i>N</i>-oxide group is influential in directing the packing structures of these complexes directly through C-H&middot;&middot;&middot;O and O&middot;&middot;&middot;&pi; interactions at the <i>N</i>-oxide. The crystallographic characterization of cationic Ir(III) compounds with uncoordinated nitrogen atoms is also presented. The C-H&middot;&middot;&middot;N interactions between these complexes form a variety of dimers, finite chains, and continuous chains. Future work will focus on functionalizing the cationic Ir(III) species into their corresponding <i>N</i>-oxide derivatives and rigorously characterizing how the <i>N</i>-oxide functional group impacts the optical properties of transition metal compounds in both cationic and neutral complexes.en
dc.description.versionPublished versionen
dc.format.mimetypeapplication/pdfen
dc.identifier.citationStumbo, E.E.; Hodge, E.K.; Williams, M.; Thornton, D.A.; McMillen, C.D.; Pienkos, J.A. Synthesis and Crystallographic Characterization of Heteroleptic Ir(III) Complexes Containing the N-oxide Functional Group and Crystallographic Characterization of Ir(III) N-oxide Precursors. Crystals 2024, 14, 281.en
dc.identifier.doihttps://doi.org/10.3390/cryst14030281en
dc.identifier.urihttps://hdl.handle.net/10919/118460en
dc.language.isoenen
dc.publisherMDPIen
dc.rightsCreative Commons Attribution 4.0 Internationalen
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/en
dc.subjectcyclometallated iridium speciesen
dc.subjectN-oxide transition metal complexen
dc.subjectheteroleptic iridium complexesen
dc.subjectcoordination chemistryen
dc.subjectcrystal structureen
dc.titleSynthesis and Crystallographic Characterization of Heteroleptic Ir(III) Complexes Containing the N-oxide Functional Group and Crystallographic Characterization of Ir(III) N-oxide Precursorsen
dc.title.serialCrystalsen
dc.typeArticle - Refereeden
dc.type.dcmitypeTexten

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