Expanding Reaction Profile of Allyl Carboxylates via 1,2-Radical Migration (RaM): Visible-Light-Induced Phosphine-Catalyzed 1,3-Carbobromination of Allyl Carboxylates

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Zhao, Gaoyuan [1 ]
Lim, Sanghyun [1 ]
Musaev, Djamaladdin G. [3 ]
Ngai, Ming-Yu [1 ,2 ]
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[1] Department of Chemistry, State University of New York, Stony Brook,NY,11794, United States
[2] Institute of Chemical Biology and Drug Discovery, State University of New York, Stony Brook,NY,11794, United States
[3] Cherry L. Emerson Center for Scientific Computation, Department of Chemistry, Emory University, Atlanta,GA,30322, United States
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This paper is dedicated to Professor Albert Padwa on the occasion of his 85th birthday. M.-Y.N. thanks the National Science Foundation (CHE1848463) for supporting this research. D.G.M. acknowledges the support of the National Science Foundation under the CCI Center for Selective C-H Functionalization (CHE-1700982) and the use of the resources of the Cherry Emerson Center for Scientific Computation at Emory University. The Shimadzu UPLC/MS used for portions of this work was purchased with funds from NIGMS equipment administrative supplement (R35-GM119652-04S1); Shimadzu Scientific Instruments grant; and Office of the Vice President for Research at Stony Brook University. We thank Professors Jayaraman Sivaguru and Rui Shang for the fruitful discussion on photoexcitation chemistry and the reviewersu2019 insightful comments and suggestions.This paper is dedicated to Professor Albert Padwa on the occasion of his 85th birthday. M.-Y.N. thanks the National Science Foundation (CHE1848463) for supporting this research. D.G.M. acknowledges the support of the National Science Foundation under the CCI Center for Selective Cu2013H Functionalization (CHE-1700982) and the use of the resources of the Cherry Emerson Center for Scientific Computation at Emory University. The Shimadzu UPLC/MS used for portions of this work was purchased with funds from NIGMS equipment administrative supplement (R35-GM119652-04S1); and Office of the Vice President for Research at Stony Brook University. We thank Professors Jayaraman Sivaguru and Rui Shang for the fruitful discussion on photoexcitation chemistry and the reviewersu2019 insightful comments and suggestions;
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摘要
Allyl carboxylates are useful synthetic intermediates in a variety of organic transformations, including catalytic nucleophilic/electrophilic allylic substitution reactions and 1,2-difunctionalization reactions. However, the catalytic 1,3-difunctionalization of allyl carboxylates remains elusive. Herein, we report the first photoinduced, phosphine-catalyzed 1,3-carbobromination of allyl carboxylates, affording a range of valuable substituted isopropyl carboxylates (sIPC). The transformation has broad functional group tolerance, is amenable to the late-stage modification of complex molecules and gram-scale synthesis, and expands the reaction profiles of allyl carboxylates and phosphine catalysis. Preliminary experimental and computational studies suggest a non-chain-radical mechanism involving the formation of an electron donor-acceptor complex, 1,2-radical migration (RaM), and Br-atom transfer processes. We anticipate that the 1,2-RaM reactivity of allyl carboxylates and the phosphine-catalyzed radical reaction will both serve as a platform for the development of new transformations in organic synthesis. © 2023 American Chemical Society.
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页码:8275 / 8284
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