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Introducing Diradicaloid Thiele's Hydrocarbon Derivatives as Ligand in Transition Metal Chemistry.

Source: PubMed, NCBI / U.S. National Library of Medicine

Angewandte Chemie (International ed. in English)Mahata Alok, Neuman Nicolás I, Sarkar BiprajitPublished 8/11/2026Last synced 8/13/2026Status: syncedPMID: 42578680DOI: 10.1002/anie.2880703

Thiele's hydrocarbon (TH) derivatives, or p-quinodimethanes, are prototypical members of the organic diradicaloid family, predominantly explored in organic and main-group organometallic chemistry. Herein, we introduce them to transition-metal coordination by employing N-doped TH derivatives as ligands. Pyridine- and pyrazine-substituted p-quinodimethane ligands were synthesized, enabling the formation of mono- and dinuclear rhodium and cyclometalated iridium complexes (Py∙Rh, Pz∙Rh, Py∙Ir, and Pz∙Ir). We show the strong effects that simple metalation, and more importantly, orthometalation can have on the photophysical and electrochemical properties, as well as on singlet-triplet gaps of these diradicaloids. Additionally, the metalated mixed-valent forms are strongly electrochromic NIR absorbing dyes. Spectro-electrochemical studies reveal distinct electronic interactions between the diradicaloid backbone and the metal centers, highlighting the potential of N-doped TH derivatives as versatile redox-active ligands in transition-metal chemistry.

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