Synlett 2006(16): 2597-2600  
DOI: 10.1055/s-2006-950447
LETTER
© Georg Thieme Verlag Stuttgart · New York

Functionalized Hydroxyquinones through Suzuki-Type Coupling of Phenyliodonium Ylides of Hydroxyquinones with Arylboronic Acids

Georgia Kazantzi, Elizabeth Malamidou-Xenikaki, Spyros Spyroudis*
Laboratory of Organic Chemistry, Chemistry Department, University of Thessaloniki, Thessaloniki 54124, Greece
Fax: +30(2310)997679; e-Mail: sspyr@chem.auth.gr;
Further Information

Publication History

Received 22 July 2006
Publication Date:
22 September 2006 (online)

Abstract

The palladium(II) acetate catalyzed reaction of phenyl­iodonium ylides of 2-hydroxyquinones with arylboronic acids affords a variety of 3-substituted 2-hydroxyquinone derivatives. Best yields are obtained by using tri(tert-butyl)phosphine as a ligand.

    References and Notes

  • 1 Thomson RH. Naturally Occurring Quinones IV   Blackie Academic & Professional; London: 1997. 
  • 2 Spyroudis S. Molecules  2000,  5:  1291 
  • 3a Hatzigrigoriou E. Spyroudis S. Varvoglis A. Liebigs Ann. Chem.  1989,  167 
  • 3b Papoutsis I. Spyroudis S. Varvoglis A. Tetrahedron Lett.  1994,  35:  8449 
  • 3c Stagliano KW. Malinakova HC. J. Org. Chem.  1999,  64:  8034 
  • 3d Emadi A. Hardwood JS. Kohanim S. Stagliano KW. Org. Lett.  2002,  4:  521 
  • 3e Spyroudis S. Xanthopoulou N. J. Org. Chem.  2002,  67:  4612 
  • 4 Koulouri S. Malamidou-Xenikaki E. Spyroudis S. Tsanakopoulou M. J. Org. Chem.  2005,  70:  5627 
  • 5 Kobayashi K. Uneda T. Kawakita M. Morikawa O. Konishi H. Tetrahedron Lett.  1997,  38:  837 
  • 6 Zhu Q. Wu J. Fathi R. Yang Z. Org. Lett.  2002,  4:  3333 
  • 7a Transylidation reactions of zwitterionic iodonium compounds are well known, see: Varvoglis A. In The Organic Chemistry of Polycoordinated Iodine   VCH; New York: 1992. 
  • 7b

    In our case the side-reaction with phosphines is described in Scheme [2] .

  • 9 For a recent review on Suzuki coupling reactions in water, see: Leadbeater NE. Chem. Commun.  2005,  2881 
  • 11a Perchellet EM. Magill MJ. Huang X. Brantis CE. Hua DH. Perchellet J.-P. Anti-Cancer Drugs  1999,  10:  749 
  • 11b Xanthopoulou NJ. Kourounakis AP. Spyroudis S. Kourounakis PN. Eur. J. Med. Chem.  2003,  38:  621 
  • 11c Xua DH. Tamura M. Huang X. Stephany HA. Helfrich BA. Perchellet EM. Sperfslage BJ. Perchellet J.-P. Jiang S. Kyle DE. Chiang PK. J. Org. Chem.  2002,  67:  2907 
8

Coupling Reaction of Ylides 5 and 9 with Arylboronic Acids 6; General Procedure. A degassed solution of arylboronic acid (1.1 mmol) and P(t-Bu)3 (0.1 mmol) in DME-H2O (4:1, 10 mL) was added to a degassed flask containing a mixture of ylide 5 or 9 (0.5 mmol), LiOH·H2O (2.7 mmol), and Pd(OAc)2 (6 mg, 4 mmol%) and the resulting suspension was stirred at r.t. under Ar for 5 h. The solution was acidified to pH 6 by the addition of 4-5 drops of acetic acid and excess DME was evaporated. CH2Cl2 (10 mL) was added and the suspension was filtered through filter paper, which was moistened with CH2Cl2 (1-2 mL). The filtrate was dried, concentrated, and subjected to column chromatography (silica gel, hexanes-EtOAc, 3:1) to afford the coupling products 7 and 10. 2-Hydroxy-3-(3-thienyl)-1,4-naphthoquinone ( 7a): Mp 126-127 °C. IR (KBr): 3322, 1650, 1590 cm-1. 1H NMR (300 MHz, CDCl3): δ = 8.16 (1 H, d, J = 8.0 Hz), 8.10 (1 H, br s), 8.08 (1 H, d, J = 8.0 Hz), 7.94 (1 H, s), 7.80-7.65 (3 H, m), 7.35 (1 H, d, J = 4.8 Hz). 13C NMR (75 MHz, CDCl3): δ = 183.8, 181.6, 151.5, 135.2, 133.1, 130.0, 129.7, 129.5, 129.1, 127.3, 126.0, 124.0, 123.2, 116.9. MS (EI): m/z (%) = 256 (100) [M+], 228 (68), 184 (25), 171 (71). Anal. Calcd for C14H8O3S: C, 65.61; H, 3.15. Found: C, 65.37; H, 3.19.

10

The coupling reaction was repeated exactly under the previously described conditions, using 1 mmol of iodobenzene instead of ylide 5