RSS-Feed abonnieren
DOI: 10.1055/s-2005-864814
Condition-Driven Selective Syntheses of Dialkyl Diselenides Involving Elemental Selenium and Sodium Borohydride
Publikationsverlauf
Publikationsdatum:
23. März 2005 (online)
Abstract
Dialkyl diselenides have been prepared from alkyl halides, sodium borohydride and elemental selenium using two different methods. One of them involves the intermediate formation of diselenide dianion equivalent (-SeSe-).
Key words
elemental selenium - sodium borohydride - alkylation - alkyl halides - benzyl halides - dimetal diselenide
-
1a
Rheinboldt H. Schwefel-, Selen-, Tellur-Verbindungen In Houben-Weyl, Methoden der Organischen Chemie Vol. 9:Müller E. Georg Thieme; Stuttgart: 1967. -
1b
Organic Selenium Compounds: Their Chemistry and Biology
Klayman DL.Gunther WHH. John Wiley and Sons; Chichester: 1973. -
1c
Paulmier C. In Selenium Reagents and Intermediates in Organic Synthesis Vol. 5:Baldwin JE. Pergamon; Oxford: 1986. -
1d
The Chemistry of Organic Selenium and Tellurium Compounds
Vol. 2:
Patai S.Rappoport Z. John Wiley and Sons; Chichester: 1987. -
1e
Krief A. In Comprehensive Organometallic Chemistry II Vol. 11:Abel EW.Stone FGA.Wilkinson G.McKillop A. Pergamon; Oxford: 1995. p.516 - Reduction of Se0 using hydrides:
-
2a
Klayman DL.Griffin TS. J. Am. Chem. Soc. 1973, 95: 197 -
2b
Gladysz JA.Hornby JL.Garbe JE. J. Org. Chem. 1978, 43: 1204 -
2c
Bergman JJ.Engman L. Synthesis 1980, 569 -
2d
Yarada K.Fujita T.Yanada R. Synlett 1998, 971 -
2e
Hideharu I.Mamoru K.Yoshihisa F.Futoshi N. J. Am. Chem. Soc. 2001, 123: 8408 -
2f
Yang X.Wang Q.Tao Y.Xu H. J. Chem. Res., Synop. 2002, 160 -
2g
Krief A.Derock M. Tetrahedron Lett. 2002, 43: 3083 - Reduction of Se0 using metals:
-
3a
Brandsma L.Wijers HE. Recl. Trav. Chim. Pays-Bas 1963, 82: 68 -
3b
Thompson D.Boudjouk P. J. Org. Chem. 1988, 53: 2109 -
3c
Syper L.Mlochowski J. Tetrahedron 1988, 44: 611 -
3d
Ping L.Xunjun Z. Synth. Commun. 1993, 23: 1721 - 4 Reduction of Se0 using metal salts:
Sekiguchi M.Tanaka H.Takami N.Ogawa A.Ryu I.Sonoda N. Heteroatom Chem. 1991, 427 - Reduction of Se0 using hydrazines:
-
5a
Syper L.Mlochowski J. Synthesis 1984, 439 -
5b
Eggert H.Nielsen O.Henriksen L. J. Am. Chem. Soc. 1986, 108: 1725 -
5c
Li JQ.Bao WL.Lue P.Zhou X.-J. Synth. Commun. 1991, 21: 799 - 6 Reduction of Se0 using metal hydroxysulfoxylates:
Bird ML.Challenger F. J. Chem. Soc. 1942, 570 - 7 Reaction of aldehydes with ‘dimetal diselenides and dimetal selenides mixture’:
Huang Z.-ZH.Liu F.-Y.Du J.-X.Huang X. OPPI Briefs 1995, 27: 492 - 8 Alkylation of metal organic diselenolates:
Krief A.Van Wemmel T.Redon M.Dumont W.Delmotte C. Angew. Chem. Int. Ed. 1999, 38: 2245 - Oxidation of organic selenols or selenolates using oxygen:
-
9a
Fujiwara S.Miyoshi SN.Ogawa A.Kambe N.Sonoda N. J. Phys. Org. Chem. 1989, 359 -
9b
Clarembeau M.Cravador A.Dumont W.Hevesi L.Krief A.Lucchetti J.Van Ende D. Tetrahedron 1985, 41: 4793 -
9c
Oae S.Togo H. Bull. Chem. Soc. Jpn. 1984, 57: 232 - 10 Oxidation of organic selenols or selenolates using perborate:
McKillop A.Koyuncu D.Krief A.Dumont W.Renier P.Trabelsi M. Tetrahedron Lett. 1990, 31: 5007 - Oxidation of organic selenols or selenolates using peroxides:
-
11a
Klapoetke T.Koepf H.Gowik P. J. Chem. Soc., Dalton Trans. 1988, 1529 -
11b
Krief A.De Mahieu AF.Dumont W.Trabelsi M. Synthesis 1988, 131 -
11c
Reich HJ.Jasperse CP. J. Am. Chem. Soc. 1987, 109: 5549 - Oxidation of organic selenols or selenolates using iodine:
-
12a
Block E.Birringer M.Jiang W.Nakahodo T.Thompson HJ.Toscano UPJ.Zhang H.Zhu X. J. Agric. Food Chem. 2001, 49: 458 -
12b
Meinke PT.Krafft GA.Guram AJ. J. Org. Chem. 1988, 53: 3632 -
13a
Krief A.Trabelsi M.Dumont W.Derock M. Synlett 2004, 1751 -
13b
Synthesized by protonation (formic acid, 2.5-4 equiv) of selenide dianion equivalent [from elemental selenium, NaBH4 and EtOH (1:2:6) in DMF]. [13a]
- 15 We have been unable to determine the structure of these species by 77Se NMR. For a related work see:
Cusik J.Dance I. Polyhedron 1991, 10: 2629 -
16a
in fact, we found in a control experiment that 6 molar equiv of dihydrogen escape from the medium (experimentally 97% of this amount) on reaction of selenium, NaBH4 and EtOH (1:2:6 mol equiv).
-
16b
Another 0.81 molar equiv of dihydrogen is evolved if aq EtOH (4 molar equiv each), is added before that of the second crop of elemental selenium.
-
17a
Liotta D.Sunay U.Santiesteban H.Markiewick W. J. Org. Chem. 1981, 46: 2605 -
17b
Dowd P.Kennedy P. Synth. Commun. 1991, 935 -
17c
Krief A.Trabelsi M.Dumont W. Synthesis 1992, 933 -
17d
Krief A.Trabelsi M. Synth. Commun. 1989, 19: 1203 -
17e
Pedersen ML.Berkovictz DB. J. Org. Chem. 1993, 58: 6966 - 18
Miyashita M.Hosshino M.Yoshikoshi A. Tetrahedron Lett. 1988, 29: 347
References
Typically mixing elemental selenium, NaBH4 and EtOH (1:1:3 molar equiv each) leads to the evolvement of dihydrogen (2.58 molar equiv, 86% of the expected amount), sequential addition of DMF and decyl bromide produces an additional formation of hydrogen (0.42 molar equiv, 14% of the expected amount).