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Nickel‐Catalyzed Amination of Silyloxyarenes through C–O Bond Activation

dc.contributor.authorWiensch, Eric M.
dc.contributor.authorMontgomery, John
dc.date.accessioned2018-09-04T20:08:38Z
dc.date.available2019-09-04T20:15:39Zen
dc.date.issued2018-08-20
dc.identifier.citationWiensch, Eric M.; Montgomery, John (2018). "Nickel‐Catalyzed Amination of Silyloxyarenes through C–O Bond Activation." Angewandte Chemie 130(34): 11211-11215.
dc.identifier.issn0044-8249
dc.identifier.issn1521-3757
dc.identifier.urihttps://hdl.handle.net/2027.42/145533
dc.description.abstractSilyloxyarenes were utilized as electrophilic coupling partners with amines in the synthesis of aniline derivatives. A diverse range of amine substrates were used, including cyclic or acyclic secondary amines, secondary anilines, and sterically hindered primary anilines. Additionally, a range of sterically hindered and unhindered primary aliphatic amines were employed, which have previously been challenging with other classes of aryl ether electrophiles. Orthogonal couplings of silyloxyarenes with aryl methyl ethers are illustrated, where selectivity between the two C−O electrophiles is determined by ligand control, thereby allowing complementary and selective late‐stage diversification of either electrophile. Finally, a sequential coupling displays the utility of this amination method along with the reversal in intrinsic reactivity between aryl methyl ethers and silyloxyarenes.Nicht geschützt, sondern reaktiv sind Silyloxyarene als elektrophile Kupplungspartner in nickelkatalysierten Aminierungen mit Aminen, die vielfältige Substitutionsmuster und Funktionalitäten aufweisen können. Die Kupplungen finden in Gegenwart anderer üblicher Arylelektrophile statt, und orthogonale Kupplungen mit Arylmethylethern sind möglich.
dc.publisherElsevier
dc.publisherWiley Periodicals, Inc.
dc.subject.otherHomogene Katalyse
dc.subject.otherNickel
dc.subject.otherSilyloxyarene
dc.subject.otherKupplungen
dc.subject.otherAminierungen
dc.titleNickel‐Catalyzed Amination of Silyloxyarenes through C–O Bond Activation
dc.typeArticleen_US
dc.rights.robotsIndexNoFollow
dc.subject.hlbsecondlevelChemical Engineering
dc.subject.hlbsecondlevelChemistry
dc.subject.hlbsecondlevelMaterials Science and Engineering
dc.subject.hlbtoplevelEngineering
dc.subject.hlbtoplevelScience
dc.description.peerreviewedPeer Reviewed
dc.description.bitstreamurlhttps://deepblue.lib.umich.edu/bitstream/2027.42/145533/1/ange201806790.pdf
dc.description.bitstreamurlhttps://deepblue.lib.umich.edu/bitstream/2027.42/145533/2/ange201806790-sup-0001-misc_information.pdf
dc.description.bitstreamurlhttps://deepblue.lib.umich.edu/bitstream/2027.42/145533/3/ange201806790_am.pdf
dc.identifier.doi10.1002/ange.201806790
dc.identifier.sourceAngewandte Chemie
dc.identifier.citedreferenceR. D. Crouch, Tetrahedron 2004, 60, 5833 – 5871.
dc.identifier.citedreferenceR. D. Crouch, Synth. Commun. 2013, 43, 2265 – 2279;
dc.identifier.citedreferenceT. D. Nelson, R. D. Crouch, Synthesis 1996, 1031 – 1069;
dc.identifier.citedreference 
dc.identifier.citedreferenceM. J. Iglesias, J. F. Blandez, M. R. Fructos, A. Prieto, E. Álvarez, T. R. Belderrain, M. C. Nicasio, Organometallics 2012, 31, 6312 – 6316;
dc.identifier.citedreferenceS. G. Rull, I. Funes-Ardoiz, C. Maya, F. Maseras, M. R. Fructos, T. R. Belderrain, M. C. Nicasio, ACS Catal. 2018, 8, 3733 – 3742;
dc.identifier.citedreferenceM. Marín, R. J. Rama, M. C. Nicasio, Chem. Rec. 2016, 16, 1819 – 1832.
dc.identifier.citedreference 
dc.identifier.citedreferenceP. M. MacQueen, M. Stradiotto, Synlett 2017, 28, 1652 – 1656; For examples of primary amine couplings using more activated substrates:
dc.identifier.citedreferenceS. Z. Ge, R. A. Green, J. F. Hartwig, J. Am. Chem. Soc. 2014, 136, 1617 – 1627;
dc.identifier.citedreferenceC. M. Lavoie, P. M. MacQueen, N. L. Rotta-Loria, R. S. Sawatzky, A. Borzenko, A. J. Chisholm, B. K. V. Hargreaves, R. McDonald, M. J. Ferguson, M. Stradiotto, Nat. Commun. 2016, 7, 11073 – 11083;
dc.identifier.citedreferenceJ. Schranck, P. Furer, V. Hartmann, A. Tlili, Eur. J. Org. Chem. 2017, 3496 – 3500.
dc.identifier.citedreferenceSelected examples of palladium-catalyzed orthogonal couplings:
dc.identifier.citedreferenceT. Kamikawa, T. Hayashi, Tetrahedron Lett. 1997, 38, 7087 – 7090;
dc.identifier.citedreferenceA. F. Littke, C. Dai, G. C. Fu, J. Am. Chem. Soc. 2000, 122, 4020 – 4028;
dc.identifier.citedreferenceG. Espino, A. Kurbangalieva, J. M. Brown, Chem. Commun. 2007, 1742 – 1744;
dc.identifier.citedreferenceF. Schoenebeck, K. N. Houk, J. Am. Chem. Soc. 2010, 132, 2496 – 2497;
dc.identifier.citedreferenceF. Proutiere, F. Schoenebeck, Angew. Chem. Int. Ed. 2011, 50, 8192 – 8195; Angew. Chem. 2011, 123, 8342 – 8345;
dc.identifier.citedreferenceF. Proutiere, F. Schoenebeck, Synlett 2012, 23, 645 – 648;
dc.identifier.citedreferenceC. Shen, Z. Wei, H. Jiao, X.-F. Wu, Chem. Eur. J. 2017, 23, 13369 – 13378.
dc.identifier.citedreferenceX. Liu, C. Hsiao, I. Kalvet, M. Leiendecker, L. Guo, F. Schoenebeck, M. Rueping, Angew. Chem. Int. Ed. 2016, 55, 6093 – 6098; Angew. Chem. 2016, 128, 6198 – 6203.
dc.identifier.citedreference 
dc.identifier.citedreferenceP. Dobrounig, M. Trobe, R. Breinbauer, Monatsh. Chem. 2017, 148, 3 – 35;
dc.identifier.citedreferenceF. Zhao, Y. F. Zhang, J. Wen, D. G. Yu, J. B. Wei, Z. Xi, Z. J. Shi, Org. Lett. 2013, 15, 3230 – 3233.
dc.identifier.citedreferenceP. Ruiz-Castillo, S. L. Buchwald, Chem. Rev. 2016, 116, 12564 – 12649.
dc.identifier.citedreferenceA. S. Guram, R. A. Rennels, S. L. Buchwald, Angew. Chem. Int. Ed. Engl. 1995, 34, 1348 – 1350; Angew. Chem. 1995, 107, 1456 – 1459.
dc.identifier.citedreferenceJ. Louie, J. F. Hartwig, Tetrahedron Lett. 1995, 36, 3609 – 3612.
dc.identifier.citedreference 
dc.identifier.citedreferenceJ. P. Wolfe, S. L. Buchwald, J. Org. Chem. 2000, 65, 1144 – 1157;
dc.identifier.citedreferenceX. Huang, K. W. Anderson, D. Zim, L. Jiang, A. Klapars, S. L. Buchwald, J. Am. Chem. Soc. 2003, 125, 6653 – 6655;
dc.identifier.citedreferenceJ. F. Hartwig, Acc. Chem. Res. 2008, 41, 1534 – 1544;
dc.identifier.citedreferenceB. P. Fors, D. A. Watson, M. R. Biscoe, S. L. Buchwald, J. Am. Chem. Soc. 2008, 130, 13552 – 13554;
dc.identifier.citedreferenceG. D. Vo, J. F. Hartwig, J. Am. Chem. Soc. 2009, 131, 11049 – 11061;
dc.identifier.citedreferenceD. S. Surry, S. L. Buchwald, Chem. Sci. 2011, 2, 27 – 50;
dc.identifier.citedreferenceR. J. Lundgren, M. Stradiotto, Aldrichimica Acta 2012, 45, 59 – 65;
dc.identifier.citedreferenceE. B. Corcoran, M. T. Pirnot, S. Lin, S. D. Dreher, D. A. DiRocco, I. W. Davies, S. L. Buchwald, D. W. C. MacMillan, Science 2016, 353, 279 – 283;
dc.identifier.citedreferenceC. M. So, Z. Zhou, C. P. Lau, F. Y. Kwong, Angew. Chem. Int. Ed. 2008, 47, 6402 – 6406; Angew. Chem. 2008, 120, 6502 – 6506.
dc.identifier.citedreferenceH. Zeng, Z. Qiu, A. Domínguez-Huerta, Z. Hearne, Z. Chen, C.-J. Li, ACS Catal. 2017, 7, 510 – 519.
dc.identifier.citedreferenceE. Wenkert, E. L. Michelotti, C. S. Swindell, J. Am. Chem. Soc. 1979, 101, 2246 – 2247.
dc.identifier.citedreferenceReviews of couplings of phenol derivatives:
dc.identifier.citedreferenceD.-G. Yu, B.-J. Li, Z.-J. Shi, Acc. Chem. Res. 2010, 43, 1486 – 1495;
dc.identifier.citedreferenceB.-J. Li, D.-G. Yu, C.-L. Sun, Z.-J. Shi, Chem. Eur. J. 2011, 17, 1728 – 1759;
dc.identifier.citedreferenceB. M. Rosen, K. W. Quasdorf, D. a Wilson, N. Zhang, A.-M. Resmerita, N. K. Garg, V. Percec, Chem. Rev. 2011, 111, 1346 – 1416;
dc.identifier.citedreferenceF.-S. Han, Chem. Soc. Rev. 2013, 42, 5270 – 5298;
dc.identifier.citedreferenceT. Mesganaw, N. K. Garg, Org. Process Res. Dev. 2013, 17, 29 – 39;
dc.identifier.citedreferenceJ. Yamaguchi, K. Muto, K. Itami, Eur. J. Org. Chem. 2013, 19 – 30;
dc.identifier.citedreferenceJ. Cornella, C. Zarate, R. Martin, Chem. Soc. Rev. 2014, 43, 8081 – 8097;
dc.identifier.citedreferenceM. Tobisu, N. Chatani, Acc. Chem. Res. 2015, 48, 1717 – 1726;
dc.identifier.citedreferenceC. Zarate, M. van Gemmeren, R. J. Somerville, R. Martin, Phenol Derivatives: Modern Electrophiles in Cross-Coupling Reactions, Elsevier, Dordrecht, 2016;
dc.identifier.citedreferenceC. M. So, F. Y. Kwong, Chem. Soc. Rev. 2011, 40, 4963 – 4972.
dc.identifier.citedreferenceSelected examples of coupling with aryl pivalates and acetates:
dc.identifier.citedreferenceK. W. Quasdorf, X. Tian, N. K. Garg, J. Am. Chem. Soc. 2008, 130, 14422 – 14423;
dc.identifier.citedreferenceB.-T. Guan, Y. Wang, B.-J. Li, D.-G. Yu, Z.-J. Shi, J. Am. Chem. Soc. 2008, 130, 14468 – 14470;
dc.identifier.citedreferenceB. J. Li, Y. Z. Li, X. Y. Lu, J. Liu, B. T. Guan, Z. J. Shi, Angew. Chem. Int. Ed. 2008, 47, 10124 – 10127; Angew. Chem. 2008, 120, 10278 – 10281;
dc.identifier.citedreferenceT. Shimasaki, M. Tobisu, N. Chatani, Angew. Chem. Int. Ed. 2010, 49, 2929 – 2932; Angew. Chem. 2010, 122, 2991 – 2994;
dc.identifier.citedreferenceM. Tobisu, K. Yamakawa, T. Shimasaki, N. Chatani, Chem. Commun. 2011, 47, 2946 – 2948;
dc.identifier.citedreferenceK. Muto, J. Yamaguchi, K. Itami, J. Am. Chem. Soc. 2012, 134, 169 – 172;
dc.identifier.citedreferenceC. Zarate, R. Martin, J. Am. Chem. Soc. 2014, 136, 2236 – 2239.
dc.identifier.citedreferenceSelected examples of coupling with aryl carbamates:
dc.identifier.citedreferenceS. Sengupta, M. Leite, D. S. Raslan, C. Quesnelle, V. Snieckus, J. Org. Chem. 1992, 57, 4066 – 4068;
dc.identifier.citedreferenceK. W. Quasdorf, M. Riener, K. V Petrova, N. K. Garg, J. Am. Chem. Soc. 2009, 131, 17748 – 17749;
dc.identifier.citedreferenceA. Antoft-Finch, T. Blackburn, V. Snieckus, J. Am. Chem. Soc. 2009, 131, 17750 – 17752;
dc.identifier.citedreferenceK. Huang, D.-G. Yu, S.-F. Zheng, Z.-H. Wu, Z.-J. Shi, Chem. Eur. J. 2011, 17, 786 – 791;
dc.identifier.citedreferenceT. Mesganaw, A. L. Silberstein, S. D. Ramgren, N. F. F. Nathel, X. Hong, P. Liu, N. K. Garg, Chem. Sci. 2011, 2, 1766 – 1771.
dc.identifier.citedreferenceSelected coupling methods using activated nucleophilic coupling partners with aryl methyl ethers:
dc.identifier.citedreferenceJ. W. Dankwardt, Angew. Chem. Int. Ed. 2004, 43, 2428 – 2432; Angew. Chem. 2004, 116, 2482 – 2486;
dc.identifier.citedreferenceB.-T. Guan, S.-K. Xiang, T. Wu, Z.-P. Sun, B.-Q. Wang, K.-Q. Zhao, Z.-J. Shi, Chem. Commun. 2008, 1437 – 1439;
dc.identifier.citedreferenceL. G. Xie, Z. X. Wang, Chem. Eur. J. 2011, 17, 4972 – 4975;
dc.identifier.citedreferenceZ.-K. Yang, D.-Y. Wang, H. Minami, H. Ogawa, T. Ozaki, T. Saito, K. Miyamoto, C. Wang, M. Uchiyama, Chem. Eur. J. 2016, 22, 15693 – 15699;
dc.identifier.citedreferenceM. Leiendecker, C. C. Hsiao, L. Guo, N. Alandini, M. Rueping, Angew. Chem. Int. Ed. 2014, 53, 12912 – 12915; Angew. Chem. 2014, 126, 13126 – 13129;
dc.identifier.citedreferenceM. Tobisu, T. Takahira, A. Ohtsuki, N. Chatani, Org. Lett. 2015, 17, 680 – 683;
dc.identifier.citedreferenceM. Tobisu, T. Takahira, N. Chatani, Org. Lett. 2015, 17, 4352 – 4355;
dc.identifier.citedreferenceM. Tobisu, T. Takahira, T. Morioka, N. Chatani, J. Am. Chem. Soc. 2016, 138, 6711 – 6714;
dc.identifier.citedreferenceC. Zarate, M. Nakajima, R. Martin, J. Am. Chem. Soc. 2017, 139, 1191 – 1197;
dc.identifier.citedreferenceG. J. Harkness, M. L. Clarke, Catal. Sci. Technol. 2018, 8, 328 – 334.
dc.identifier.citedreferenceSelected coupling methods using milder nucleophilic coupling partners with aryl methyl ethers:
dc.identifier.citedreferenceM. Tobisu, T. Shimasaki, N. Chatani, Angew. Chem. Int. Ed. 2008, 47, 4866 – 4869; Angew. Chem. 2008, 120, 4944 – 4947;
dc.identifier.citedreferenceP. Álvarez-Bercedo, R. Martin, J. Am. Chem. Soc. 2010, 132, 17352 – 17353;
dc.identifier.citedreferenceM. Tobisu, T. Morioka, A. Ohtsuki, N. Chatani, Chem. Sci. 2015, 6, 3410 – 3414;
dc.identifier.citedreferenceZ.-C. Cao, Q.-Y. Luo, Z.-J. Shi, Org. Lett. 2016, 18, 5978 – 5981;
dc.identifier.citedreferenceL. Guo, X. Liu, C. Baumann, M. Rueping, Angew. Chem. Int. Ed. 2016, 55, 15415 – 15419; Angew. Chem. 2016, 128, 15641 – 15645.
dc.identifier.citedreference 
dc.identifier.citedreferenceM. Tobisu, T. Shimasaki, N. Chatani, Chem. Lett. 2009, 38, 710 – 711;
dc.identifier.citedreferenceM. Tobisu, A. Yasutome, K. Yamakawa, T. Shimasaki, N. Chatani, Tetrahedron 2012, 68, 5157 – 5161.
dc.identifier.citedreferenceZ. W. Chen, H. Y. Zeng, S. A. Girard, F. Wang, N. Chen, C. J. Li, Angew. Chem. Int. Ed. 2015, 54, 14487 – 14491; Angew. Chem. 2015, 127, 14695 – 14699.
dc.identifier.citedreference 
dc.identifier.citedreferenceF. Zhao, D.-G. Yu, R.-Y. Zhu, Z. Xi, Z.-J. Shi, Chem. Lett. 2011, 40, 1001 – 1003;
dc.identifier.citedreferenceA. Ohgi, Y. Nakao, Chem. Lett. 2016, 45, 45 – 47;
dc.identifier.citedreferenceE. M. Wiensch, D. P. Todd, J. Montgomery, ACS Catal. 2017, 7, 5568 – 5571.
dc.identifier.citedreference 
dc.identifier.citedreferenceM. Lalonde, T. H. Chan, Synthesis 1985, 817 – 845;
dc.owningcollnameInterdisciplinary and Peer-Reviewed


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