Abstract
Recycling of heterogenized gold(I), gold(III), and palladium(II) complexes could be achieved for Suzuki and Sonogashira cross-coupling reaction between iodo benzene and arylboronic acids or alkynes. Au(I) and Pd(II) afford selectively nonsymmetrical biaryl compounds, while gold(III) complexes can only catalyze the arylboronic or alkynes homocoupling. Recycling occurs without loss of the catalytic activity after several reaction cycles.
Key words
C-C coupling - gold - Suzuki - Sonogashira - homogeneous catalysis - heterogenized
References and Notes
1a
Hashmi ASK.
Hutchings GJ.
Angew. Chem. Int. Ed.
2006,
45:
7896
1b
Bond GC.
Louis C.
Thompson DT. In Catalysis by Gold
Imperial College Press;
London:
2006.
1c
Dyker G.
Angew. Chem. Int. Ed.
2000,
39:
4237 ; and references therein
2
Corma A.
García H.
Chem. Rev.
2003,
103:
4307
3a
Yao X.
Li Ch.-J.
J. Am. Chem. Soc.
2004,
126:
6884
3b
Wei Ch.
Li Ch.-J.
J. Am. Chem. Soc.
2003,
125:
9584
4a
Haruta M.
Yamada N.
Kobayashi T.
Iijima S.
J. Catal.
1989,
115:
301
4b
Guzman J.
Gates BC.
J. Am. Chem. Soc.
2004,
126:
2672
4c
Daniel MC.
Astruc D.
Chem. Rev.
2004,
104:
293
4d
Lemire C.
Meyer R.
Shaikhutdino S.
Freund HJ.
Angew. Chem. Int. Ed.
2004,
43:
118
5
Corma A.
Serna P.
Science
2006,
313:
332
6a
Prati L.
Rossi M.
J. Catal.
1998,
176:
552
6b
Abad A.
Concepción P.
Corma A.
García H.
Angew. Chem. Int. Ed.
2005,
44:
4066
6c
Enache DI.
Edwards JK.
Landon P.
Solsona-Espriu B.
Carley AF.
Herzing AA.
Watanabe M.
Kiely CJ.
Knight DW.
Hutchings GJ.
Science
2006,
311:
362
7a
Carrettin S.
Guzmán J.
Corma A.
Angew. Chem. Int. Ed.
2005,
44:
2242
7b
Hashmi ASK.
Schwarz L.
Choi J.-H.
Frost TM.
Angew. Chem. Int. Ed.
2000,
39:
2285
8a
Hashmi ASK.
Angew. Chem. Int. Ed.
2005,
44:
6990
8b
Arcadi A.
Di Giuseppe S.
Curr. Org. Chem.
2004,
8:
795
8c
Hoffmann-Röder A.
Krause N.
Org. Biomol. Chem.
2005,
3:
387
8d
Hashmi ASK.
Gold Bull.
2003,
36:
3
8e
Hashmi ASK.
Gold Bull.
2004,
37:
51
8f
González-Arellano C.
Corma A.
Iglesias M.
Sánchez F.
Chem. Commun.
2005,
3451
8g
Hashmi ASK.
Salatte R.
Frey W.
Chem. Eur. J.
2006,
12:
6991
8h
Hashmi ASK.
Weyrauch JP.
Rudolph M.
Kurpejovic E.
Angew. Chem. Int. Ed.
2004,
43:
6545
9a
Metal-Catalyzed Cross-Coupling Reactions
Diederich F.
Stang PG.
Wiley-VCH;
Weinheim:
1997.
9b
Transition Metals for Organic Synthesis, Building Blocks and Fine Chemicals
Beller M.
Wiley-VCH;
Weinheim:
2004.
10a
Kresge CT.
Leonowicz ME.
Roth WJ.
Vartuli JC.
Beck JS.
Nature (London)
1992,
359:
710
10b
Beck JS.
Roth WJ.
Leonowicz ME.
Kresge CT.
Schmitt KD.
Chu CT.-W.
Olson KH.
Sheppard E.
McCullen SB.
Higgins JB.
Schlenk JL.
J. Am. Chem. Soc.
1992,
114:
10834
11a
Corma A.
Fornés V.
Pergher SB.
Nature (London)
1998,
396:
353
11b
Corma A.
Fornés V.
Martínez-Triguero J.
Pergher SB.
J. Catal.
1999,
186:
57
11c
Corma A.
Fornés V.
Guil JM.
Pergher SB.
Maesen ThLM.
Buglass JG.
Microporous Mesoporous Mater.
2000,
38:
301
12a
González-Arellano C.
Gutiérrez-Puebla E.
Iglesias M.
Sánchez F.
Eur. J. Inorg. Chem.
2004,
1955
12b
Corma A.
Gutiérrez-Puebla E.
Iglesias M.
Monge A.
Pérez-Ferreras S.
Sánchez F.
Adv. Synth. Catal.
2006,
348:
1899
13 Suzuki: the reaction was carried out in a 25 mL vessel, at 130 °C in a time range of 3-24 h. In a typical run, a mixture of aryl halide (10 mmol), boronic acid (15 mmol), aq K3 PO4 (20 mmol), and catalyst (10-20 mol%) in 3 mL of o -xylene was stirred for the desired time. The solution was allowed to cool, and a 1:1 mixture of Et2 O-H2 O (20 mL) was added. The organic layer was washed, separated, further washed with another 10 mL portion of Et2 O, dried with anhyd MgSO4 , and filtered. The solvent and volatiles were completely removed under vacuum to give the crude product which subjected to column chromatographic separation resulted in pure compounds. The reaction was followed by GC-MS. At the end of the process, the mixture of reaction was filtered; the residue of support-containing catalyst washed to completely remove the remains of products and/or reactants and used again.
14 Sonogashira: The reaction was carried out in a 25 mL vessel, at 130 °C during 24 h. In a typical run, a mixture of aryl halide (10 mmol), alkyne (15 mmol), aq K2 CO3 or K3 PO4 (20 mmol) and catalyst (10-20 mol%) in 3 mL of o -xylene was stirred for the desired time. The reaction was followed by GC-MS. At the end of the process, the mixture of reaction was filtered; the residue of support-containing catalyst washed to completely remove the remains of products and/or reactants, and used again.