Remarkable rate acceleration of SmI3-mediated iodination of acetates of Baylis-Hillman adducts in ionic liquid: facile synthesis of (Z)-allyl iodides
Значительное ускорение реакции йодирования ацетатов аддуктов Байлиса—Хиллмана, опосредованной SmI3, в ионной жидкости: простой синтез (Z)-аллилйодидов
2006-02-27
SCID: 54.1/jxexv4y3
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(Z)-allyl iodidesBaylis-Hillman acetatesionic liquidsamarium triiodidestereoselective iodination
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Abstract (AI)
Stereoselective transformation of Baylis-Hillman acetates 1 into corresponding (Z)-allyl iodides 2 has been achieved by treatment of 1 with samarium triiodide in THF. Remarkable rate acceleration of samarium triiodide-mediated iodination of 1 was found when ionic liquid 1-n-butyl-3-methyl-imidazolium tetrafluroborate ([bmim]BF(4)) was used as reaction media in stead of THF. This novel approach proceeds readily at 50 degrees C within a few minutes to afford (Z)-allyl iodides 2 in excellent yields. A mechanism involving stereoselective iodination of the acetates of Baylis-Hillman adducts by samarium triiodide is described, in which a six-membered ring transition state played a key role in the stereoselective formation of 2.
Key Findings
1
Samarium triiodide converts Baylis–Hillman acetates stereoselectively into the corresponding (Z)-allyl iodides.
2
The ionic-liquid process proceeds at 50 °C within minutes and affords (Z)-allyl iodides in excellent yields.
3
The proposed stereochemical mechanism involves a six-membered-ring transition state during iodination.
4
Using [bmim]BF4 ionic liquid instead of THF markedly accelerates SmI3-mediated iodination.
Research Object
Baylis–Hillman acetates undergoing SmI3-mediated iodination in ionic liquid
Research Subject
Rate acceleration, stereoselectivity, and six-membered-ring transition-state mechanism in the formation of (Z)-allyl iodides
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2006-02-27
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