Synthesis 2005(14): 2433-2444  
DOI: 10.1055/s-2005-872103
FEATUREARTICLE
© Georg Thieme Verlag Stuttgart · New York

A Family of New 1,2,4-Trioxanes by Photooxygenation of Allylic Alcohols in Sensitizer-Doped Polymers and Secondary Reactions

Anna Bartoschek, Tamer T. El-Idreesy, Axel G. Griesbeck*, Lars-Oliver Höinck, Johann Lex, Claus Miara, Jörg M. Neudörfl
University of Cologne, Institute of Organic Chemistry, Greinstr. 4, 50939 Köln, Germany
Fax: +49(221)4705057; e-Mail: griesbeck@uni-koeln.de;
Further Information

Publication History

Received 13 May 2005
Publication Date:
29 July 2005 (online)

Abstract

Type II photooxygenation (singlet oxygen) is described as a synthetically useful way for the preparation of allylic hydro­peroxides and endoperoxides using sensitizer-adsorbed or covalently sensitizer-doped polymeric (macro- or nanosized) containers. Facilitated product separation and purification as well as increased reactivity are advantages of these techniques in comparison with solution-phase photochemistry. The products generated by Type II photooxygenation have been used for the syntheses of numerous polycyclic peroxides with a common 1,2,4-trioxane core as exhibited in the natural antimalarial artemisinin.

    References

  • 2a Singlet Oxygen   Frimer AA. CRC Press; Boca Raton: 1985. 
  • 2b Wasserman HH. Murray RW. Singlet Oxygen   Organic Chemistry Vol. 40:  Academic Press; New York: 1979. 
  • 2c Rånby B. Rabeck JF. Singlet Oxygen Reactions with Organic Compounds and Polymers   Wiley; Chichester: 1978. 
  • 3a Adam W. Bosio S. Bartoschek A. Griesbeck AG. In CRC Handbook of Organic Photochemistry and Photobiology   Horspool WM. Lenci F. CRC Press; Boca Raton: 2004.  p.25/1-25/19  
  • 3b Griesbeck AG. El-Idreesy TT. Adam W. Krebs O. In CRC Handbook of Organic Photochemistry and Photobiology   Horspool WM. Lenci F. CRC Press; Boca Raton: 2004.  p.8/1-8/20  
  • 4a Sundén H. Engqvist M. Casas J. Ibrahem I. Córdova A. Angew. Chem. Int. Ed.  2004,  43:  6532 ; Angew. Chem. 2004, 116, 6694
  • 4b Córdova A. Sundén H. Engqvist M. Ibrahem I. Casas J. J. Am. Chem. Soc.  2004,  126:  8914 
  • 5 Anastas PT. Warner JC. Green Chemistry, Theory and Practice   Oxford University Press; Oxford: 1998. 
  • 6 Schweitzer C. Schmidt R. Chem. Rev.  2003,  103:  1685 
  • 7a Griesbeck AG. Bartoschek A. Chem. Commun.  2002,  1594 
  • 7b Griesbeck AG. El-Idreesy TT. Bartoschek A. Adv. Synth. Catal.  2004,  346:  245 
  • 8 Griesbeck AG. El-Idreesy TT. Photochem. Photobiol. Sci.  2005,  4:  205 
  • 9 Griesbeck AG. Adam W. Bartoschek A. El-Idreesy TT. Photochem. Photobiol. Sci.  2003,  2:  877 
  • 11 Adam W. Griesbeck AG. Angew. Chem., Int. Ed. Engl.  1985,  24:  1070 ; Angew. Chem. 1985, 97, 1071
  • 13 Mercier C. Chabardes P. Pure Appl. Chem.  1994,  66:  1509 
  • 15a Wiesner J. Ortmann R. Mitsch A. Wissner P. Sattler I. Jomaa H. Schlitzer M. Pharmazie  2003,  58:  289 
  • 15b Wiesner J. Kettler K. Sakowski J. Ortmann R. Jomaa H. Schlitzer M. Bioorg. Med. Chem. Lett.  2003,  13:  361 
  • 16a Fidock DA. Rosenthal PJ. Croft SL. Brun R. Nwaka S. Nat. Rev. Drug Discovery  2004,  3:  509 
  • 16b Ridley RG. Nature  2002,  415:  686 
  • 17a Wu Y. Acc. Chem. Res.  2002,  35:  255 
  • 17b Haynes RK. Vonwiller SC. Acc. Chem. Res.  1997,  30:  73 
  • 18a Jung M. Kim H. Lee K. Park M. Mini Rev. Med. Chem.  2003,  3:  159 
  • 18b Jefford CW. In Advances in Drug Research   Testa B. Meyer AU. Academic Press; New York: 1997.  Chap. 7.
  • For a recently published elegant synthesis of yingzhaosu A, see:
  • 18c Szpilman AM. Korshin EE. Rozenberg H. Bachi MD. J. Org. Chem.  2005,  70:  3618 
  • 19a Schmid G. Hofheinz W. J. Am. Chem. Soc.  1983,  105:  624 
  • 19b Zhou W.-S. Xu X.-X. Acc. Chem. Res.  1994,  27:  211 
  • 19c Zhou W.-S. Pure Appl. Chem.  1986,  58:  817 
  • 19d Avery MA. Jennings-White C. Chong WKM. Tetrahedron Lett.  1987,  28:  4629 
  • 19e Liu HJ. Yeh WL. Chew SY. Tetrahedron Lett.  1993,  34:  4435 
  • 19f Jadav JS. Babu RS. Sabitha G. Arkivoc  2003,  iii:  125 ; www.arkat-usa.org
  • 20 McCullough KJ. Nojima M. Curr. Org. Chem.  2001,  5:  601 
  • 21 Posner GH. O’Neill PM. Acc. Chem. Res.  2004,  37:  397 
  • 22a Haynes RK. Ho W.-Y. Chan H.-W. Fugmann B. Stetter J. Croft SL. Vivas L. Peters W. Robinson BL. Angew. Chem. Int. Ed.  2004,  42:  1381 ; Angew. Chem. 2004, 116, 1405
  • 22b Jefford CW. Rossier J.-C. Milhous WK. Heterocycles  2000,  52:  1345 
  • 22c Dechy-Cabaret O. Benoit-Vical F. Loup C. Robert A. Gornitzka H. Bonhoure A. Vial H. Magnaval J.-F. Séguéla J.-P. Meunier B. Chem. Eur. J.  2004,  10:  1625 
  • 23a Singh C. Gupta N. Puri SK. Bioorg. Med. Chem. Lett.  2003,  13:  3447 
  • 23b Singh C. Gupta N. Puri SK. Tetrahedron Lett.  2005,  46:  205 
  • 24 Griesbeck AG. El-Idreesy TT. Fiege M. Brun R. Org. Lett.  2002,  4:  4193 
  • 25 Pearce PJ. Richards DH. Scilly NF. J. Chem. Soc., Perkin Trans. 1  1972,  1655 
  • 26 Griesbeck AG. El-Idreesy TT. Höinck L.-O. Lex J. Brun R. Bioorg. Med. Chem. Lett.  2005,  15:  595 
  • 27a Singh C. Malik H. Sunil K. Bioorg. Med. Chem. Lett.  2004,  14:  459 
  • 27b Dechy-Cabaret O. Benoit-Vical F. Robert A. Meunier B. ChemBioChem  2000,  1:  281 
  • 29a Posner GH. Northrop J. Paik I.-H. Borstnik K. Dolan P. Kensler TW. Xie S. Shapiro TA. Bioorg. Med. Chem.  2002,  10:  227 
  • 29b Posner GH. Paik I.-H. Sur S. McRiner AJ. Borstnik K. Xie S. Shapiro TA. J. Med. Chem.  2003,  46:  1060 
  • 29c Posner GH. McRiner AJ. Paik I.-H. Sur S. Borstnik K. Xie S. Shapiro TA. Alagbala A. Foster B. J. Med. Chem.  2004,  47:  1299 
  • 29d Jeyadevan JP. Bray PG. Chadwick J. Mercer AE. Byrne A. Ward SA. Park BK. Williams DP. Cosstick R. Davies J. Higson AP. Irving E. Posner GH. O’Neill PM. J. Med. Chem.  2004,  47:  1290 
1

X-ray structure analyses.

10

Griesbeck, A. G.; Bartoschek, A., unpublished results.

12

Griesbeck, A. G.;, Miara, C., unpublished results.

14

Griesbeck, A. G.; Höinck, L.-O., unpublished results.

28

Griesbeck, A. G.; El-Idreesy, T. T., unpublished results.