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Expanding the Scope of Palladium-Catalyzed B - N Cross-Coupling Chemistry in Carboranes.


ABSTRACT: Over the past several years, a number of strategies for the functionalization of dicarba-closo-dodecaboranes (carboranes) have emerged. Despite these developments, B - N bond formation on the carborane scaffold remains a challenge due to the propensity of strong nucleophiles to partially deboronate the parent closo-carborane cluster into the corresponding nido form. Here we show that azide, sulfonamide, cyanate, and phosphoramidate nucleophiles can be straightforwardly cross-coupled onto the B(9) vertices of the o- and m-carborane core from readily accessible precursors without significant deboronation by-products, laying the groundwork for further study into the utility and properties of these new B-aminated carborane species. We further showcase select reactivity of the installed functional groups highlighting some unique features stemming from the combination of the electron-donating B(9) position and the large steric profile of the B-connected carborane substituent.

SUBMITTER: Mu X 

PROVIDER: S-EPMC8128264 | biostudies-literature | 2020 Dec

REPOSITORIES: biostudies-literature

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Expanding the Scope of Palladium-Catalyzed B - N Cross-Coupling Chemistry in Carboranes.

Mu Xin X   Hopp Morgan M   Dziedzic Rafal M RM   Waddington Mary A MA   Rheingold Arnold L AL   Sletten Ellen M EM   Axtell Jonathan C JC   Spokoyny Alexander M AM  

Organometallics 20201126 23


Over the past several years, a number of strategies for the functionalization of dicarba-<i>closo</i>-dodecaboranes (carboranes) have emerged. Despite these developments, B - N bond formation on the carborane scaffold remains a challenge due to the propensity of strong nucleophiles to partially deboronate the parent <i>closo</i>-carborane cluster into the corresponding <i>nido</i> form. Here we show that azide, sulfonamide, cyanate, and phosphoramidate nucleophiles can be straightforwardly cross  ...[more]

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