Unique selective reactivity of the rare-earth metal ambiphilic carbenes towards organic molecules and novel reactivity patterns with isonitriles

Abstract

Studies on the chemistry of highly active rare-earth (RE) metal ambiphilic carbenes face challenges due to the lack of appropriate model molecular platforms because the corresponding ambiphilic carbenes have empty p-orbital. Here, the synthesis of novel multi-chelated amidate rare-earth metal pincer complexes the ambiphilic carbenes is realized by using indol−2−yl−based ligands. The ambiphilic carbene (indol-2-yl carbon) of these complexes is extremely active and shows unique selective reactivity towards various organic molecules including carbodiimides, imine, diphenyldiazomethane, aluminum alkyls, 9−BBN and isonitriles, which demonstrate a range of unprecedented reactivity patterns such as formal [2+2] cyclometallation, [3+3] annulation, and aza-[4+1] annulation. While, the unprecedented aza-[4+1+1] annulation products were isolated from the reactions of the rare-earth metal complexes bearing electrophilic carbene and strongly polarized metallacyclopropanes with 2,6-dimethylphenylisonitrile. Such reactivities differs sharply from those of common transition-metal complexes with the corresponding substrates. The electronic and steric effects of the ligands and the effects of central metal ions on the reactivity patterns were investigated both computationally and experimentally.

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Article information

Article type
Edge Article
Submitted
25 vas. 2025
Accepted
20 geg. 2025
First published
23 geg. 2025
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY-NC license

Chem. Sci., 2025, Accepted Manuscript

Unique selective reactivity of the rare-earth metal ambiphilic carbenes towards organic molecules and novel reactivity patterns with isonitriles

F. Chai, L. Maron, W. Wu, T. Rajeshkumar, Z. Huang, Q. Yuan, Y. Wei and S. Wang, Chem. Sci., 2025, Accepted Manuscript , DOI: 10.1039/D5SC01502B

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