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Highly active alkyne metathesis catalysts operating under open air condition.


ABSTRACT: Alkyne metathesis represents a rapidly emerging synthetic method that has shown great potential in small molecule and polymer synthesis. However, its practical use has been impeded by the limited availability of user-friendly catalysts and their generally high moisture/air sensitivity. Herein, we report an alkyne metathesis catalyst system that can operate under open-air conditions with a broad substrate scope and excellent yields. These catalysts are composed of simple multidentate tris(2-hydroxyphenyl)methane ligands, which can be easily prepared in multi-gram scale. The catalyst substituted with electron withdrawing cyano groups exhibits the highest activity at room temperature with excellent functional group tolerance (-OH, -CHO, -NO2, pyridyl). More importantly, the catalyst provides excellent yields (typically >90%) in open air, comparable to those operating under argon. When dispersed in paraffin wax, the active catalyst can be stored on a benchtop under ambient conditions without any decrease in activity for one day (retain 88% after 3 days). This work opens many possibilities for developing highly active user-friendly alkyne metathesis catalysts that can function in open air.

SUBMITTER: Ge Y 

PROVIDER: S-EPMC7893043 | biostudies-literature | 2021 Feb

REPOSITORIES: biostudies-literature

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Highly active alkyne metathesis catalysts operating under open air condition.

Ge Yanqing Y   Huang Shaofeng S   Hu Yiming Y   Zhang Lei L   He Ling L   Krajewski Sebastian S   Ortiz Michael M   Jin Yinghua Y   Zhang Wei W  

Nature communications 20210218 1


Alkyne metathesis represents a rapidly emerging synthetic method that has shown great potential in small molecule and polymer synthesis. However, its practical use has been impeded by the limited availability of user-friendly catalysts and their generally high moisture/air sensitivity. Herein, we report an alkyne metathesis catalyst system that can operate under open-air conditions with a broad substrate scope and excellent yields. These catalysts are composed of simple multidentate tris(2-hydro  ...[more]

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