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- W3215762237 endingPage "18853" @default.
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- W3215762237 abstract "The development of Fischer-type electrophilic carbene chemistry with early transition metals has been a great challenge due to the fact that such metals in their high oxidation states lack the d electrons to stabilize the electrophilic carbene. Herein, we disclose the first experimental and theoretical findings of in situ transformation of an sp2 carbanion to a Fischer-type electrophilic carbene with rare-earth metals in their high oxidation state with a d0 electron via electron transfer. The carbene may undergo 1,1-migratory insertion into an adjacent RE-C(sp3) bond, and an unprecedented ring opening of the indole ring of the ligand occurs when the carbenes undergo nucleophilic substitution with a special organolithium reagent o-Me2NC6H4CH2Li. The key to success is the uniquely tailored novel ligand systems featuring a suitable conjugate building block (-C═C-C═N) bearing an sp2 carbanion connected to the rare-earth metal center." @default.
- W3215762237 created "2021-12-06" @default.
- W3215762237 creator A5003466470 @default.
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- W3215762237 creator A5086339701 @default.
- W3215762237 date "2021-11-30" @default.
- W3215762237 modified "2023-10-17" @default.
- W3215762237 title "Transformation of the sp<sup>2</sup> Carbanion to Carbene with Subsequent 1,1-Migratory Insertion and Nucleophilic Substitution in Rare-Earth Metal Chemistry" @default.
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- W3215762237 doi "https://doi.org/10.1021/acs.inorgchem.1c02589" @default.
- W3215762237 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/34846129" @default.
- W3215762237 hasPublicationYear "2021" @default.
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