| Literature DB >> 34855370 |
Harrison A Mills1, Fadi Alsarhan1, Ta-Chung Ong1, Milan Gembicky2, Arnold L Rheingold2, Alexander M Spokoyny1,3.
Abstract
Chalcogen-containing carboranes have been known for several decades and possess stable exopolyhedral B(9)-Se and B(9)-Te σ bonds despite the electron-donating ability of the B(9) vertex. While these molecules are known, little has been done to thoroughly evaluate their electrophilic and nucleophilic behavior. Herein, we report an assessment of the electrophilic reactivity of m-carboranylselenyl(II), -tellurenyl(II), and -tellurenyl(IV) chlorides and establish their reactivity pattern with Grignard reagents, alkenes, alkynes, enolates, and electron-rich arenes. These electrophilic reactions afford unique electron-rich B-Y-C (Y = Se, Te) bonding motifs not commonly found before. Furthermore, we show that m-carboranylselenolate, and even m-carboranyltellurolate, can be competent nucleophiles and participate in nucleophilic aromatic substitution reactions. Arene substitution chemistry is shown to be further extended to electron-rich species via palladium-mediated cross-coupling chemistry.Entities:
Year: 2021 PMID: 34855370 PMCID: PMC8761389 DOI: 10.1021/acs.inorgchem.1c02981
Source DB: PubMed Journal: Inorg Chem ISSN: 0020-1669 Impact factor: 5.165