Synlett 2009(6): 945-948  
DOI: 10.1055/s-0028-1088212
LETTER
© Georg Thieme Verlag Stuttgart ˙ New York

meso-Oxidation of Porphyrins: Convenient Iron(III)-Mediated Synthesis of Dioxoporphyrins

Dong-Mei Shen, Chao Liu, Xiao-Guang Chen, Qing-Yun Chen*
Key Laboratory of Organofluorine Chemistry, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, 345 Lingling Road, Shanghai 200032, P. R. of China
Fax: +86(21)64166128; e-Mail: chenqy@mail.sioc.ac.cn;
Further Information

Publication History

Received 11 December 2008
Publication Date:
16 March 2009 (online)

Abstract

Iron(III)-mediated meso-oxidation reactions of 5,15-di­arylporphyrins resulted in a variety of dioxoporphyrins in high yields. In the case of meso-amino-substituted diarylporphyrins, a variety of products was produced.

    References and Notes

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  • 1b Inhoffen HH. Fuhrhop J.-H. von der Haar F. Liebigs Ann. Chem.  1966,  700:  92 
  • 1c Fuhrhop J.-H. J. Chem. Soc., Chem. Commun.  1970,  781 
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  • 2a Watson ZC. Bampos N. Sanders JKM. New J. Chem.  1998,  1135 
  • 2b Marty M. Watson ZC. Twyman LJ. Nakash M. Sanders JKM. Chem. Commun.  1998,  2265 
  • 2c McCallien DWJ. Sanders JKM. J. Am. Chem. Soc.  1995,  117:  6611 
  • 3a Shen D.-M. Liu C. Chen X.-G. Chen Q.-Y. J. Org. Chem.  2009,  74:  206 
  • 3b Liu C. Shen D.-M. Chen Q.-Y. J. Am. Chem. Soc.  2007,  129:  5814 
  • 3c Jin L.-M. Chen L. Yin J.-J. Guo C.-C. Chen Q.-Y. Eur. J. Org. Chem.  2005,  3994 
  • 3d Jin L.-M. Yin J.-J. Chen L. Guo C.-C. Chen Q.-Y. Synlett  2005,  2893 
  • 5 Esdaile LJ. Jensen P. McMurtrie JC. Arnold DP. Angew. Chem. Int. Ed.  2007,  46:  2136 
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4

Typical Procedure for the Fe(III)-Mediated Synthesis of Dioxoporphyrins Zn2 A mixture of Zn1a (100 mg, 0.19 mmol, 1.0 equiv) and FeCl3˙6H2O (513 mg, 10 equiv) was stirred in DMF (20 mL) in air at 130 ˚C for 5 h. After cooling to r.t., the reaction mixture was diluted with CH2Cl2 (20 mL) and washed with H2O three times. The organic layer was passed through dry SiO2 and evaporated to dryness. The resulting solid was crystallized from CH2Cl2-MeOH or purified by flash column chromatography (SiO2, 300-400 mesh, PE-EtOAC 4:1) to produce the desired dioxoporphyrin Zn2a (90 mg, 85% yield).

Characterization Data for Selected Representative CompoundsDioxoporphyrin Zn2a
¹H NMR (300 MHz, acetone-d 6 ): δ = 6.28-6.31 (m, 4 H,
β-H), 6.87-6.90 (m, 4 H, β-H), 7.33 (d, J = 3.6 Hz, 4 H, PhH), 7.40-7.42 (m, 6 H, PhH). MS (MALDI): m/z = 555.1 [M + H+]. UV/vis (CH2Cl2): λmax (%) = 403 (13.0), 450 (6.7), 509 (2.6), 546 (5.6), 708 (1.0) nm. Anal. Calcd for C32H18N4O2Zn˙2MeOH: C, 65.86; H, 4.23; N, 9.04. Found: C, 65.14; H, 4.07; N, 8.86.
Dioxoporphyrin H 2 2a
¹H NMR (300 MHz, CDCl3): δ = 6.51 (br s, 4 H, β-H), 7.17 (d, J = 4.2 Hz, 4 H, β-H), 7.42-7.53 (m, 10 H, PhH), 14.02 (s, 2 H, NH). MS (MALDI): m/z = 493.2 [M + H+]. UV/vis (CH2Cl2): λmax (%) = 408 (3.1), 472 (1.0), 499 (1.2) nm. Anal. Calcd for C32H20N4O2˙0.5EtOH: C, 76.88; H, 4.50; N, 10.87. Found: C, 76.37; H, 4.31; N, 10.45.
Dioxoporphyrin Ni2a
¹H NMR (300 MHz, CDCl3): δ = 6.20 (d, J = 4.2 Hz, 4 H,
β-H), 6.45 (d, J = 4.5 Hz, 4 H, β-H), 7.45 (s, 10 H, PhH).
MS (MALDI): m/z = 549.1 [M + H+]. UV/vis (CH2Cl2):
λmax (%) = 358 (14.4), 445 (35.4), 524 (8.1), 660 (1.0) nm. Anal. Calcd for C32H18N4O2Ni: C, 68.85; H, 3.43; N, 10.04. Found: C, 68.63; H, 3.49; N, 9.67. Crystal data: C34H26NiO4, M = 613.30, triclinic, space group P-1, a = 7.6032 (11), b = 8.6684 (12), c = 11.3434 (16) Å, α = 94.136 (2), β = 100.890 (2), γ = 108.289 (2)˚, V = 690.11 (17) ų, T = 293 (2) K, Z = 1, D c = 1.476 g/cm, 4091 reflections measured, 2937 unique which were used in all calculations. R(int) = 0.0734; R 1 = 0.0465. The final wR(F ²) was 0.0465 (all data). CCDC 711638 contains the supplementary crystallographic data for this paper. These data can be obtained free of charge from The Cambridge Crystallographic Data Centre via www.ccdc.cam.ac.uk/data_request/cif.