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For the Pd-mediated ortho-alkylation of 2-arylpyridine and related compounds, see:
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For the Pd-mediated ortho-alkylation of 2-arylpyridine and related compounds, see:. Zhang Y., Feng J., and Li C.-J. J. Am. Chem. Soc. 130 (2008) 2900-2901
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Chen X., Li J.-J., Hao X.-S., Goodhue C.E., and Yu J.-Q. J. Am. Chem. Soc. 128 (2006) 78-79
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Yu, J.-Q.5
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4
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34848899222
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For the Pd-mediated ortho-arylation of 2-arylpyridine and related compounds, see:
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For the Pd-mediated ortho-arylation of 2-arylpyridine and related compounds, see:. Hull K.L., and Sanford M.S. J. Am. Chem. Soc. 129 (2007) 11904-11905
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Hull, K.L.1
Sanford, M.S.2
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8
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33745577893
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For the Pd-mediated ortho-halogenation of 2-arylpyridine and related compounds, see:
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For the Pd-mediated ortho-halogenation of 2-arylpyridine and related compounds, see:. Kalyani D., Dick A.R., Anani W.Q., and Sanford M.S. Org. Lett. 8 (2006) 2523-2526
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Kalyani, D.1
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11
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25444475266
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For the Pd-mediated ortho-acetoxylation of 2-arylpyridine and related compounds, see:
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For the Pd-mediated ortho-acetoxylation of 2-arylpyridine and related compounds, see:. Kalyani D., and Sanford M.S. Org. Lett. 7 (2005) 4149-4152
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Kalyani, D.1
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41449116165
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For other examples on the transition metal-catalyzed ortho-functionalization of 2-arylpyridine and related compounds, see:
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For other examples on the transition metal-catalyzed ortho-functionalization of 2-arylpyridine and related compounds, see:. Yu W.-Y., Sit W.N., Lai K.-M., Zhou Z., and Chan A.S.C. J. Am. Chem. Soc. 130 (2008) 3304-3306
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3042642760
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For the synthesis and biological activities of 2-(2-hydroxyaryl)pyridine derivatives, see:
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For the synthesis and biological activities of 2-(2-hydroxyaryl)pyridine derivatives, see:. Murata T., Shimada M., Sakakibara S., Yoshino T., Masuda T., Shintani T., Sato H., Koriyama Y., Fukushima K., Nunami N., Yamauchi M., Fuchikami K., Komura H., Watanabe A., Ziegelbauer K.B., Bacon K.B., and Lowinger T.B. Bioorg. Med. Chem. Lett. 14 (2004) 4019-4022
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Murata T., Shimada M., Kadono H., Sakakibara S., Yoshino T., Masuda T., Shimazaki M., Shintani T., Fuchikami K., Bacon K.B., Ziegelbauer K.B., and Lowinger T.B. Bioorg. Med. Chem. Lett. 14 (2004) 4013-4017
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Murata T., Shimada M., Sakakibara S., Yoshino T., Kadono H., Masuda T., Shimazaki M., Shintani T., Fuchikami K., Sakai K., Inbe H., Takeshita K., Niki T., Umeda M., Bacon K.B., Ziegelbauer K.B., and Lowinger T.B. Bioorg. Med. Chem. Lett. 13 (2003) 913-918
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0034977489
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For the applications of 2-(2-hydroxyaryl)pyridine derivatives, see:
-
For the applications of 2-(2-hydroxyaryl)pyridine derivatives, see:. Reichardt C., Che D., Heckenkemper G., and Schafer G. Eur. J. Org. Chem. (2001) 2343-2361
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Reichardt, C.1
Che, D.2
Heckenkemper, G.3
Schafer, G.4
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35
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38949099682
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For our recent reports on the synthesis of pyridine and related compounds from Baylis-Hillman adducts, see:
-
For our recent reports on the synthesis of pyridine and related compounds from Baylis-Hillman adducts, see:. Gowrisankar S., Lee H.S., Kim J.M., and Kim J.N. Tetrahedron Lett. 49 (2008) 1670-1673
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Gowrisankar, S.1
Lee, H.S.2
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Kim, J.N.4
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50049113602
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note
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++1).
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39
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50049083604
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note
-
2 (30% solution) instead of Oxone produced 7a in trace amounts (<10%).
-
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40
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50049131437
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note
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2b was isolated in 20%).
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41
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50049136270
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note
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4c
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