Synlett 2011(12): 1683-1686  
DOI: 10.1055/s-0030-1260809
LETTER
© Georg Thieme Verlag Stuttgart ˙ New York

Synthesis of 1-Pentafluorosulfanyl-1,3-Dienes

Wibke S. Husstedta, Joseph S. Thrasherb, Günter Haufe*a
a Organisch-Chemisches Institut, Universität Münster, Corrensstr. 40, 48149 Münster, Germany
Fax: +49(251)8339772; e-Mail: haufe@uni-muenster.de;
b Department of Chemistry, Clemson University, P.O. Box 340973, Clemson, SC 29634-0973, USA
e-Mail: fluorine@bama.ua.edu;
Further Information

Publication History

Received 2 April 2011
Publication Date:
29 June 2011 (online)

Abstract

A series of pentafluorosulfanyl-substituted dienes has been synthesized from 3-pentafluorosulfanyl-prop-2-enal employing either Grignard reactions with subsequent dehydration or by ­oxidation of 1-pentafluorosulfanyl-alk-1-en-3-ols to the corresponding ketones and subsequent Wittig-type olefinations.

    References

  • For recent reviews, see:
  • 1a Winter RW. Dodean RA. Gard GL. ‘SF5-Synthons: Pathways to Organic Derivatives of SF6’, In Fluorine-Containing Synthons, ACS Symposium Series   Vol. 911:  Soloshonok VA. American Chemical Society; Washington: 2005.  p.87 
  • 1b Kirsch P. Röschenthaler GV. ‘Functional Compounds Based on Hypervalent Sulfur Fluorides’, In Current Fluoroorganic Chemistry. New Synthetic Directions, Technologies, Materials, and Biological Applications, ACS Symposium Series   Vol. 949:  Soloshonok VA. Mikami K. Yamazaki T. Welch JT. Honek JF. American Chemical Society; Washington: 2006.  p.221 
  • 1c Gard GL. Chim. Oggy-Chem. Today  2009,  27:  10 
  • 2 Case C. Ray NH. J. Chem. Soc.  1961,  2066 
  • 3 Dolbier WR. Ait-Mohand S. Schertz TD. Sergeeva TA. Cradlebaugh JA. Mitani A. Gard GL. Winter RW. Thrasher JS. J. Fluorine Chem.  2006,  127:  1302 
  • 4 Hahn A. Kirsch P. Eur. J. Org. Chem.  2005,  3095 
  • 5a Sipyagin AM. Enshov VS. Kashtanov SA. Bateman CP. Mullen BD. Tan Y.-T. Thrasher JS.
    J. Fluorine Chem.  2004,  125:  1305 
  • 5b Lim DS. Choi JS. Pak CS. Welch JT. J. Pestic. Sci.  2007,  32:  255 
  • 6 Stump B. Eberle C. Schweizer WB. Kaiser M. Brun R. Krauth-Siegel RL. Lentz D. Diederich F. ChemBioChem  2009,  10:  79 
  • 7a Sitzmann ME. J. Fluorine Chem.  1991,  52:  195 
  • 7b Abe T. Tao G.-H. Joo Y.-H. Gard GL. Winter RW. Shreeve JM. Chem. Eur. J.  2009,  15:  9897 
  • 8 Winter R. Nixon PG. Gard GL. Langmuir  2004,  20:  5776 
  • 9 Wipf P. Mo T. Geib SJ. Caridha D. Dow GS. Gerena L. Roncal N. Milner EE. Org. Biomol. Chem.  2009,  7:  4163 
  • 10 Sheppard WA. J. Am. Chem. Soc.  1962,  84:  3072 
  • 11a Kirsch P. Bremer M. Heckmeier M. Tarumi K. Angew. Chem. Int. Ed.  1999,  38:  1898 ; Angew. Chem. 1999, 111, 2174
  • 11b Huang Y. Gard GL. Shreeve JM. Tetrahedron Lett.  2010,  51:  6951 
  • 12a Brel VK. Synthesis  2006,  339 
  • 12b Brel VK. Tetrahedron Lett.  2005,  46:  4777 
  • 13 Brel VK. J. Fluorine Chem.  2007,  128:  862 
  • 14 Gard GL. Winter RW. J. Fluorine Chem.  1994,  66:  109 
  • 15 Fitch RW. Luzzio FA. Ultrasonics Sonochemistry  1997,  4:  99 
  • 16 Becker HGO. Beckert R. Domschke G. Fanghänel E. Habicher WD. Metz P. Pavel D. Schwetlick K. Organikum   21th Ed.:  Wiley-VCH; Weinheim: 2001.  p.558 
  • 17 Nikolova GS. Haufe G. Synthesis  2008,  527 
  • 18 Werkhoven TM. van Nispen R. Lugtenburg J. Eur. J. Org. Chem.  1999,  2909 
  • 19 Husstedt WS. Diploma Thesis   Universität Münster; Germany: 2006. 
  • 20 House HO. Jones VK. Frank GA. J. Org. Chem.  1964,  27:  3327 
  • 21 Ando K. Tetrahedron Lett.  1995,  36:  4105 
  • 22 Hua DH. J. Am. Chem. Soc.  1986,  108:  3835 
  • 23 Jagodzinska M. Huguenot F. Zanda M. Tetrahedron  2007,  63:  2042 
  • 24 Brückner R. Braukmüller S. Beckhaus H.-D. Dirksen J. Goeppel D. Oestreich M. Praktikum Präparative Organische Chemie, Organisch-Chemisches Grundpraktikum   Spektrum-Verlag; Heidelberg: 2008.  p.152 
  • 25 Ponomarenko MV. Serguchev YA. Röschenthaler G.-V. Synthesis  2010,  3906