期刊
ACS CATALYSIS
卷 11, 期 5, 页码 2715-2734出版社
AMER CHEMICAL SOC
DOI: 10.1021/acscatal.0c04882
关键词
lanthanides; homogeneous catalysis; trisamide complexes; organic synthesis
资金
- National Science Foundation [CHE-1856619]
Homoleptic lanthanide trisamides serve as a bridge between organolanthanide chemistry and the synthetic methodology community, showing unique reactivity and mechanisms that require further study. By reviewing their applications in organic synthesis, their value, versatility, and potential directions for future development are highlighted.
Homoleptic lanthanide trisamides provide a simple and highly accessible bridge between organolanthanide chemistry and the synthetic methodology community, and although they have proven to be competent catalysts in a wide variety of unique transformations, their reactivity, scope, and mechanism remain understudied relative to lanthanide metallocenes and related organometallic catalysts. In this Perspective, we provide a critical review of the recent advances in homoleptic lanthanide-mediated catalysis as they apply to atom-efficient and environmentally benign organic syntheses. Instead of an exhaustive review, we focus on selected examples of the unexpected reactivity displayed by readily available Ln[N(SiMe3)(2)](3) complexes. By focusing on both the experimental as well as theoretical and mechanistic aspects of this work, we seek to highlight the value, versatility, and underlying concepts governing the unusual catalytic properties of homoleptic lanthanide amides and offer a general outlook on the prospects for this field.
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