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DOI: 10.1055/s-0028-1083627
Zinc(II) Iodide-Triethylsilane: A Novel Mild Reduction System for Direct Deoxygenation of Aryl Aldehydes, Ketones, and α,β-Unsaturated Enones
Publikationsverlauf
Publikationsdatum:
12. November 2008 (online)
Abstract
ZnI2-TESH has been found to be a novel mild and efficient reduction system. This reagent, in contrast to the traditional ionic deoxygenation systems (TFA-R3SiH, BF3˙OEt2-R3SiH, etc.), could directly deoxygenate different kinds of carbonyl compounds such as aryl aldehydes, ketones, and α,β-unsaturated enones to the corresponding hydrocarbons in moderate to excellent yields.
Key words
zinc iodide - ionic hydrogenation - deoxygenation - carbonyl compounds - hydrocarbons
- Supporting Information for this article is available online:
- Supporting Information
-
1a
Kursanov DN.Parnes ZN.Loim NM. Synthesis 1974, 633 -
1b
Larock RC. Comprehensive Organic Transformations: A Guide to Functional Group Preparations 2nd ed.: Wiley; New York: 1999. -
1c
Handbook of Reagents
for Organic Synthesis: Oxidizing and Reducing Agents
Burke SD.Danheiser RL. Wiley & Sons; West Sussex: 1999. - 2
Poser GH.Switzer C. J. Am. Chem. Soc. 1986, 108: 1239 -
3a
Fry JL.Orfanopoulos M.Aslington MG.Dittman MR.Silverman SB. J. Org. Chem. 1978, 23: 374 -
3b
Doyle MP.West CT.Donnelly SJ.Mcosker CC. J. Organomet. Chem. 1976, 117: 129 -
4a
Allin SM.Northfield CJ.Page MI.Slawin AMZ. Tetrahedron Lett. 1999, 40: 143 -
4b
Kano S.Yokomatsu T.Iwasawa H.Shibuya S. Tetrahedron Lett. 1987, 28: 6331 - 5
Lopez FJ.Nitzan D. Tetrahedron Lett. 1999, 40: 2071 - 6
Bullock RM. Angew. Chem. Int. Ed. 2007, 46: 7360 - 7
Berson JA.Davis RF. J. Am. Chem. Soc. 1972, 94: 3659 - 8
Nakanishi J.Tatamidani H.Fukumoto Y.Chatani N. Synlett 2006, 869 - 9
Li AR.Johnson MG.Liu J.Chen X.Du X.Mihalic JT.Deignan J.Gustin DJ.Duquette J.Fu Z.Zhu L.Marcus AP.Bergeron P.McGee LR.Danao J.Lemon B.Carabeo T.Sullivan T.Ma J.Tang L.Tonn G.Collins TL.Medina JC. Bioorg. Med. Chem. Lett. 2008, 18: 688 - 10
Anada M.Tanaka M.Washio T.Yamawaki M.Abe T.Hashimoto S. Org. Lett. 2007, 9: 4559 - 11
Gu Q.Zheng YH.Li YC. Synthesis 2006, 975 - 12
Bullock RM.Song JS. J. Am. Chem. Soc. 1994, 116: 8602 -
13a
Powell DA.Batey RA. Org. Lett. 2002, 4: 2913 -
13b
Malachowski WP.Paul T.Phounsavath S. J. Org. Chem. 2007, 72: 6792 - 15
Ewing GJ.Robins MJ. Org. Lett. 1999, 1: 635 - 16
Chochrek P.Wicha J. J. Org. Chem. 2007, 72: 5276 - 17
Zheng YH.Li YC. J. Org. Chem. 2003, 68: 1603 - 18
Blagg BS.Boger DL. Tetrahedron 2002, 58: 6343 - 21
Niyomura O.Iwasawa T.Sawada N.Tokunaga M.Obora Y.Tsuj Y. Organometallics 2005, 24: 3468 - 22
Toda F.Shigemasa T. J. Chem. Soc., Perkin Trans. 1 1989, 209 - 24
Miyai T.Onishi Y.Baba A. Tetrahedron Lett. 1998, 39: 6291 -
25a
Kursanov ZN.Parnes ZN. Usp. Khim. 1969, 38: 1783 -
25b
Kursanov DN.Parnes ZN.Bassova GI.Loim NM.Zdanovich VI. Tetrahedron 1967, 23: 2235 -
26a
Jung M.Li X.Bustos DA.ElSohly HN.McChesney JD. Tetrahedron Lett. 1989, 30: 5973 -
26b
Avery MA.Mehrotra S.Johnson TL.Bonk JD.Vroman JA.Miller R. J. Med. Chem. 1996, 39: 4149 - 27
Jiang B.Si YG. J. Org. Chem. 2002, 67: 9449
References and Notes
Deng, G.; Zhao, X. L.; Li, Z.; Jiang, B.; Li, Y. C. unpublished results.
19General Procedure for the Synthesis of Product 2: To a stirred solution of substrate 1 (1 mmol) in 1,2-dichloroethane (5 mL) at r.t. was added solid zinc iodide (638 mg, 2 mmol).Then, triethylsilane (1.9 mL, 10 mmol) was added slowly to the above suspension via a syringe. The reaction mixture was stirred at r.t. until 1 was completely disappeared or there was no further conversion (TLC inspection). The stirring was stopped, and then the reaction mixture was filtered through Celite. The Celite was washed with CH2Cl2 (4 × 15 mL). The combined filtrate was washed with H2O and sat. brine, and then dried over anhyd Na2SO4. After concentration, the residue was chromatographed on silica gel, eluting with 0-25% EtOAc in cyclohexane.
20
Analytic Data
for 4-Chloro-2-[2,2,2-trifluoro-1-(triethyl-silyloxy)ethyl]aniline
(2j): ¹H NMR (300 MHz,
CDCl3): δ = 0.62
(q, J = 7.9 Hz, 6 H), 0.92 (t, J = 7.9 Hz, 9 H), 3.93 (br s,
2 H), 4.94 (q, J = 7.2 Hz, 1
H), 6.60 (d, J = 8.5 Hz,
1
H), 7.09 (dd, J = 8.5, 2.5 Hz,
1 H), 7.15 (d, J = 2.5 Hz, 1 H).
MS (EI): m/z (%) = 339 (39) [M+],
322 (4), 310 (43), 190 (32), 188 (100), 77 (36). HRMS (EI): m/z
calcd for C14H21NOSiClF3: 339.1033;
found: 339.1041.
Analytic Data
for 5-[(4-Hydroxy-3-methoxyphenyl)-methyl]-2-methoxy-4-methylphenol
(2d-2): ¹H NMR (300 MHz, CDCl3): δ = 2.19
(s, 3 H), 3.80 (s, 2 H), 3.82 (s, 3 H), 3.86 (s, 3 H), 5.39-5.56
(m, 2 H), 6.61 (d, J = 7.7 Hz,
1 H), 6.63 (s, 1 H), 6.68 (d, J = 3.2
Hz, 2 H), 6.82 (d, J = 7.7 Hz, 1
H). ¹³C NMR (100 MHz, CDCl3): δ = 19.2,
38.4, 55.8, 56.0, 111.1, 112.9, 114.1, 116.0, 121.3, 127.7, 132.0,
132.4, 143.3, 143.7, 144.6, 146.4. IR (KBr): 3384, 3022, 2931, 2835,
1608, 1513, 1460, 1431 cm-¹. MS (EI):
m/z
(%) = 274 (100) [M+],
273 (6), 259 (33), 150 (38). HRMS (EI): m/z calcd for C16H18O4:
274.1205; found: 274.1200.