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◆ Nature communications2026-08-26

Uncover the strength of polyhedral dicarbaboranes as the next generation of superbases in organocatalysis.

Jan Vrána, Zuzana Kapustová, Martin Kamlar, Peter Šramel, Petr Vosáhlo, Zdeňka Růžičková, Josef Holub, Jan Veselý, Aleš Růžička

原始摘要(英文原文)· Original abstract
Although boron compounds appear in many chemical transformations, it is hard to imagine, these usually Lewis acidic, species would act as Lewis bases or even base-catalysts. Here we show that the adduct o-2, formed by the reaction of closo-1,2-dicarbadecaborane(10) with two equivalents of an N-heterocyclic carbene, exhibits superbasic properties with proton affinity surpassing that of the parent carbene as well as commercial superbases. It reacts selectively with C-acids, solvents and water, with its reactivity strongly influenced by substrate pKA. o-2 facilitates various Lewis base-catalyzed transformations-including aldol condensation, the Thorpe reaction, Michael addition, Robinson annulation and β-nitrostyrene polymerization-with exceptional efficiency and selectivity. Moreover, o-2 effectively catalyzes highly diastereoselective conjugate additions of 4-substituted pyrazolones to electron-poor olefins and spirocyclizations of pyrazolones with dibenzylideneacetones. A notable tolerance of catalyst to significant amounts of water and base-sensitive functional groups has also been observed.
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Uncover the strength of polyhedral dicarbaboranes as the next generation of superbases in organocatalysis. — 科研速览 Science Skim