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[(DPEPhos)(bcp)Cu]PF6: A General and Broadly Applicable Copper-Based Photoredox Catalyst
Published on: May 21, 2019
Visible-Light-Mediated 1,2-Arylpyridylation of Alkenes Using Arylboronic Acids and Cyanopyridines
Zi-Wei Xi1, Zhuo-Ying Dong1, Shu-Qing Hu1
1School of Chemistry and Chemical Engineering, Zhejiang Sci-Tech University, Hangzhou 310018, China.
Abstract:
We report a visible-light-mediated photoreduction strategy for the three-component 1,2-arylpyridylation of alkenes with arylboronic acids and 4-cyanopyridines. The reaction mechanism was verified via radical trapping experiments and DFT calculations. This reaction proceeds under mild conditions, features broad substrate compatibility and is readily scalable to the gram scale.
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Like alkenes, alkynes can be reduced to alkanes in the presence of transition metal catalysts such as Pt, Pd, or Ni. The reaction involves two sequential syn additions of hydrogen via a cis-alkene intermediate.
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One of the convenient methods for the preparation of aldehydes and ketones is via hydration of alkynes. Hydroboration-oxidation of alkynes is an indirect hydration reaction in which an alkyne is treated with borane followed by oxidation with alkaline peroxide to form an enol that rapidly converts into an aldehyde or a ketone. Terminal alkynes form aldehydes, whereas internal alkynes give ketones as the final product.
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Alkylation of terminal alkynes with primary alkyl halides in the presence of a strong base like sodium amide is one of the common methods for the synthesis of longer carbon-chain alkynes. For example, treatment of 1-propyne with sodium amide followed by reaction with ethyl bromide yields 2-pentyne.
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