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4
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53849105066
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For recent illustrative examples, see:
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For recent illustrative examples, see:. Song Z., Weng X., Weng L., Huang J., Wang X., Bai M., Zhou Y., Yang G., and Zhou X. Chem. Eur. J. 14 (2008) 5751-5754
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Zhou, X.9
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5
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40749083920
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Thurston, D.E.6
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6
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43049083694
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Duan J.-X., Jiao H., Kaizerman J., Stanton T., Evans J.W., Lan L., Lorente G., Banica M., Jung D., Wang J., Ma H., Li X., Yang Z., Hoffman R.M., Ammons W.S., Hart C.P., and Matteucci M. J. Med. Chem. 51 (2008) 2412-2420
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Ma, H.11
Li, X.12
Yang, Z.13
Hoffman, R.M.14
Ammons, W.S.15
Hart, C.P.16
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7
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35648969182
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Weng X., Ren L., Weng L., Huang J., Zhu S., Zhou X., and Weng L. Angew. Chem., Int. Ed. 46 (2007) 8020-8023
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Weng, X.1
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Zhu, S.5
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Weng, L.7
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8
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33846898056
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Woo S., Jung J., Lee C., Kwon Y., and Na Y. Bioorg. Med. Chem. Lett. 17 (2007) 1163-1166
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Woo, S.1
Jung, J.2
Lee, C.3
Kwon, Y.4
Na, Y.5
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10
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-
17444427328
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Demeunynck M., Bailly C., and Wilson W.D. (Eds), Wiley-VCH, Weinheim
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Casely-Hayford M., and Searcey M. In: Demeunynck M., Bailly C., and Wilson W.D. (Eds). Small Molecule DNA and RNA Binders Vol. 1 (2003), Wiley-VCH, Weinheim 676-696
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Small Molecule DNA and RNA Binders
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Casely-Hayford, M.1
Searcey, M.2
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14
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0034596974
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Hartley J.A., Hazrati A., Kelland L.R., Khanim R., Shipman M., Suzenet F., and Walker L.F. Angew. Chem., Int. Ed. 39 (2000) 3467-3470
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Hartley, J.A.1
Hazrati, A.2
Kelland, L.R.3
Khanim, R.4
Shipman, M.5
Suzenet, F.6
Walker, L.F.7
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17
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-
33746902399
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Kelly G.T., Liu C., Smith R., Coleman R.S., and Watanabe C.M.H. Chem. Biol. 13 (2006) 485-492
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(2006)
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Kelly, G.T.1
Liu, C.2
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Coleman, R.S.4
Watanabe, C.M.H.5
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18
-
-
0034619976
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-
Hartley J.A., Hazrati A., Hodgkinson T.J., Kelland L.R., Khanim R., Shipman M., and Suzenet F. Chem. Commun. (2000) 2325-2326
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(2000)
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Hartley, J.A.1
Hazrati, A.2
Hodgkinson, T.J.3
Kelland, L.R.4
Khanim, R.5
Shipman, M.6
Suzenet, F.7
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19
-
-
19544369505
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LePla R.C., Landreau C.A.S., Shipman M., Hartley J.A., and Jones G.D.D. Bioorg. Med. Chem. Lett. 15 (2005) 2861-2864
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LePla, R.C.1
Landreau, C.A.S.2
Shipman, M.3
Hartley, J.A.4
Jones, G.D.D.5
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20
-
-
27144468075
-
-
For an alternative approach, see:
-
For an alternative approach, see:. Casely-Hayford M.A., Pors K., James C.H., Patterson L.H., Hartley J.A., and Searcey M. Org. Biomol. Chem. 3 (2005) 3585-3589
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(2005)
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Casely-Hayford, M.A.1
Pors, K.2
James, C.H.3
Patterson, L.H.4
Hartley, J.A.5
Searcey, M.6
-
22
-
-
30544447359
-
-
Bisamidation of 1,4-diiodobenzene under Cu catalysis has been observed, see:
-
Bisamidation of 1,4-diiodobenzene under Cu catalysis has been observed, see:. Toto P., Gesquière J.-C., Deprez B., and Willand N. Tetrahedron Lett. 47 (2006) 1181-1186
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(2006)
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Toto, P.1
Gesquière, J.-C.2
Deprez, B.3
Willand, N.4
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23
-
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33748830735
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-
and references cited therein
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Bryant H.J., Dardonville C.Y., Hodgkinson T.J., Hursthouse M.B., Malik K.M.A., and Shipman M. J. Chem. Soc., Perkin Trans. 1 (1998) 1249-1255 and references cited therein
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Bryant, H.J.1
Dardonville, C.Y.2
Hodgkinson, T.J.3
Hursthouse, M.B.4
Malik, K.M.A.5
Shipman, M.6
-
24
-
-
65549121780
-
-
note
-
Amide (2S)-8 was prepared from (2S)-benzyl 2-hydroxy-3-methylbut-3-enoate (Ref. 9) by heating in a sealed tube with 7 M ammonia in methanol (40 °C, 16 h, 79%).
-
-
-
-
25
-
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65549153338
-
-
note
-
+]; found 750.3025.
-
-
-
-
27
-
-
6444238095
-
-
The importance of the naphthalene MeO- and Me- groups has been noted previously, see:
-
The importance of the naphthalene MeO- and Me- groups has been noted previously, see:. Landreau C.A.S., LePla R.C., Shipman M., Slawin A.M., and Hartley J.A. Org. Lett. 6 (2004) 3505-3509
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(2004)
Org. Lett.
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Landreau, C.A.S.1
LePla, R.C.2
Shipman, M.3
Slawin, A.M.4
Hartley, J.A.5
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28
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65549162838
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-
Ref. 4f
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Ref. 4f.
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