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Arylamidoethyl-Functionalized Imidazolium Salts: Precursors for Dianionic [C,N,C]2– Carbene Ligands at a Platinum Center

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Rust,  Jörg
Service Department Lehmann (EMR), Max-Planck-Institut für Kohlenforschung, Max Planck Society;

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Lehmann,  Christian W.
Service Department Lehmann (EMR), Max-Planck-Institut für Kohlenforschung, Max Planck Society;

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Citation

Mell, B., Rust, J., Lehmann, C. W., Berger, R. J. F., Otte, D., Ertl, M., et al. (2021). Arylamidoethyl-Functionalized Imidazolium Salts: Precursors for Dianionic [C,N,C]2– Carbene Ligands at a Platinum Center. Organometallics, 40(7), 890-898. doi:10.1021/acs.organomet.1c00013.


Cite as: https://hdl.handle.net/21.11116/0000-0008-8B89-1
Abstract
Arylamidoethyl-functionalized imidazolium bromides were prepared from the corresponding N-(2-bromoethyl)benzamides ArC(O)N(H)CH2CH2Br (Ar = 3-O2NC6H4, Ph, 3,4-Cl2C6H3) and 1-methylimidazole. These imidazolium salts react with PtCl2 in DMSO in the presence of a base at 100 °C to give ortho-metalated platinum(II) complexes, in which the imidazolium salt has lost a total of three protons. The resulting ligand is a tridentate, dianionic [C,N,C]2– pincer-type system, bound to the square-planar metal center through carbon atoms of the carbene and the ortho-metalated arene as well as the nitrogen atom of the amide functionality. The coordinated DMSO can be replaced by other N-heterocyclic carbenes, resulting in the formation of both homo- and heteroleptic bis(carbene) platinum(II) complexes. The molecular structures and photophysical properties of the complexes are reported. High-level computational methods were used to elucidate the electronic structures of the complexes.