Reaction of Arylsulfonylhydrazones of Aldehydes with α-Magnesio Sulfones. A Novel Olefin Synthesis
Reactions of representative tosylhydrazones of aldehydes and ketones with α-metalated sulfones were examined in order to develop a practical olefination method. Treatment of aldehyde tosylhydrazone 2 with an excess of α-lithiated methyl phenyl or dimethyl sulfones yielded 3a. The reaction of 2 with...
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Veröffentlicht in: | Journal of organic chemistry 2001-10, Vol.66 (21), p.6994-7001 |
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creator | Kurek-Tyrlik, Alicja Marczak, Stanislaw Michalak, Karol Wicha, Jerzy Zarecki, Andrzej |
description | Reactions of representative tosylhydrazones of aldehydes and ketones with α-metalated sulfones were examined in order to develop a practical olefination method. Treatment of aldehyde tosylhydrazone 2 with an excess of α-lithiated methyl phenyl or dimethyl sulfones yielded 3a. The reaction of 2 with sterically unhindered lithiated alkyl sulfones gave mixtures of the respective olefination products 3b−d along with the Shapiro fragmentation product 4. Sterically hindered lithiated sulfones afforded Shapiro products exclusively. In contrast, aldehyde tosylhydrazones 2 or 6 in reactions with a variety of α-magnesio primary or secondary alkyl sulfones gave olefination products 3a−j and 7a−c in high yields (Tables and ). β-Branched alkyl sulfones afforded predominantly (E)-alkenes, whereas unhindered primary sulfones gave mixtures of (E)- and (Z)-alkenes with low selectivity. Reaction of the 2,4,6-triisopropylbenzenesulfonylhydrazone (trisylhydrazone) of cyclodecanone 11c with α-magnesio methyl phenyl sulfone afforded the methylidene derivative 12a contaminated with the Shapiro product 13. Tosylhydrazone 2 resisted reaction with i-PrMgCl and gave only a small amount of the addition product in reaction with Bu2Mg. Some mechanistic aspects of the reaction of tosylhydrazones with organomagnesium compounds are discussed. |
doi_str_mv | 10.1021/jo015699l |
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A Novel Olefin Synthesis</title><source>ACS Publications</source><creator>Kurek-Tyrlik, Alicja ; Marczak, Stanislaw ; Michalak, Karol ; Wicha, Jerzy ; Zarecki, Andrzej</creator><creatorcontrib>Kurek-Tyrlik, Alicja ; Marczak, Stanislaw ; Michalak, Karol ; Wicha, Jerzy ; Zarecki, Andrzej</creatorcontrib><description>Reactions of representative tosylhydrazones of aldehydes and ketones with α-metalated sulfones were examined in order to develop a practical olefination method. Treatment of aldehyde tosylhydrazone 2 with an excess of α-lithiated methyl phenyl or dimethyl sulfones yielded 3a. The reaction of 2 with sterically unhindered lithiated alkyl sulfones gave mixtures of the respective olefination products 3b−d along with the Shapiro fragmentation product 4. Sterically hindered lithiated sulfones afforded Shapiro products exclusively. In contrast, aldehyde tosylhydrazones 2 or 6 in reactions with a variety of α-magnesio primary or secondary alkyl sulfones gave olefination products 3a−j and 7a−c in high yields (Tables and ). β-Branched alkyl sulfones afforded predominantly (E)-alkenes, whereas unhindered primary sulfones gave mixtures of (E)- and (Z)-alkenes with low selectivity. Reaction of the 2,4,6-triisopropylbenzenesulfonylhydrazone (trisylhydrazone) of cyclodecanone 11c with α-magnesio methyl phenyl sulfone afforded the methylidene derivative 12a contaminated with the Shapiro product 13. Tosylhydrazone 2 resisted reaction with i-PrMgCl and gave only a small amount of the addition product in reaction with Bu2Mg. 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A Novel Olefin Synthesis</title><title>Journal of organic chemistry</title><addtitle>J. Org. Chem</addtitle><description>Reactions of representative tosylhydrazones of aldehydes and ketones with α-metalated sulfones were examined in order to develop a practical olefination method. Treatment of aldehyde tosylhydrazone 2 with an excess of α-lithiated methyl phenyl or dimethyl sulfones yielded 3a. The reaction of 2 with sterically unhindered lithiated alkyl sulfones gave mixtures of the respective olefination products 3b−d along with the Shapiro fragmentation product 4. Sterically hindered lithiated sulfones afforded Shapiro products exclusively. In contrast, aldehyde tosylhydrazones 2 or 6 in reactions with a variety of α-magnesio primary or secondary alkyl sulfones gave olefination products 3a−j and 7a−c in high yields (Tables and ). β-Branched alkyl sulfones afforded predominantly (E)-alkenes, whereas unhindered primary sulfones gave mixtures of (E)- and (Z)-alkenes with low selectivity. Reaction of the 2,4,6-triisopropylbenzenesulfonylhydrazone (trisylhydrazone) of cyclodecanone 11c with α-magnesio methyl phenyl sulfone afforded the methylidene derivative 12a contaminated with the Shapiro product 13. Tosylhydrazone 2 resisted reaction with i-PrMgCl and gave only a small amount of the addition product in reaction with Bu2Mg. Some mechanistic aspects of the reaction of tosylhydrazones with organomagnesium compounds are discussed.</description><issn>0022-3263</issn><issn>1520-6904</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2001</creationdate><recordtype>article</recordtype><recordid>eNptkEtOwzAQhi0EglJYcAGUDUgsAn7G8bJCvKRSHoW15bgODbhxsRMg3IqLcCYMrWDDbEYz_zczmh-AHQQPEcTo6NFBxDIh7AroIYZhmglIV0EPQoxTgjOyATZDeIQxGGPrYAMhJjhGogf0rVG6qVyduDIZ-M6G1pau7uy0m3j17moTfhQ7MbETi9eqmSafH-mleoha5ZLxz4AJh8kgGbkXY5Mra8qqTsZd3UwjErbAWqlsMNvL3Af3pyd3x-fp8Ors4ngwTBWhoklLRRXKyzxjZc5pThEWGuWMFFwog6jmMKOCFoXAOi9yRFg-wQXhhCHOhGaG9MH-Yu_cu-fWhEbOqqCNtao2rg3y-2PKsYjgwQLU3oXgTSnnvpop30kE5bej8tfRyO4ul7bFzEz-yKWFEUgXQBUa8_arK_8kM044k3fXYzkekZvzWzyS15HfW_BKh3in9XX05J_DXwBljLE</recordid><startdate>20011019</startdate><enddate>20011019</enddate><creator>Kurek-Tyrlik, Alicja</creator><creator>Marczak, Stanislaw</creator><creator>Michalak, Karol</creator><creator>Wicha, Jerzy</creator><creator>Zarecki, Andrzej</creator><general>American Chemical Society</general><scope>BSCLL</scope><scope>NPM</scope><scope>AAYXX</scope><scope>CITATION</scope><scope>7X8</scope></search><sort><creationdate>20011019</creationdate><title>Reaction of Arylsulfonylhydrazones of Aldehydes with α-Magnesio Sulfones. 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A Novel Olefin Synthesis</atitle><jtitle>Journal of organic chemistry</jtitle><addtitle>J. Org. Chem</addtitle><date>2001-10-19</date><risdate>2001</risdate><volume>66</volume><issue>21</issue><spage>6994</spage><epage>7001</epage><pages>6994-7001</pages><issn>0022-3263</issn><eissn>1520-6904</eissn><abstract>Reactions of representative tosylhydrazones of aldehydes and ketones with α-metalated sulfones were examined in order to develop a practical olefination method. Treatment of aldehyde tosylhydrazone 2 with an excess of α-lithiated methyl phenyl or dimethyl sulfones yielded 3a. The reaction of 2 with sterically unhindered lithiated alkyl sulfones gave mixtures of the respective olefination products 3b−d along with the Shapiro fragmentation product 4. Sterically hindered lithiated sulfones afforded Shapiro products exclusively. In contrast, aldehyde tosylhydrazones 2 or 6 in reactions with a variety of α-magnesio primary or secondary alkyl sulfones gave olefination products 3a−j and 7a−c in high yields (Tables and ). β-Branched alkyl sulfones afforded predominantly (E)-alkenes, whereas unhindered primary sulfones gave mixtures of (E)- and (Z)-alkenes with low selectivity. Reaction of the 2,4,6-triisopropylbenzenesulfonylhydrazone (trisylhydrazone) of cyclodecanone 11c with α-magnesio methyl phenyl sulfone afforded the methylidene derivative 12a contaminated with the Shapiro product 13. Tosylhydrazone 2 resisted reaction with i-PrMgCl and gave only a small amount of the addition product in reaction with Bu2Mg. Some mechanistic aspects of the reaction of tosylhydrazones with organomagnesium compounds are discussed.</abstract><cop>United States</cop><pub>American Chemical Society</pub><pmid>11597219</pmid><doi>10.1021/jo015699l</doi><tpages>8</tpages></addata></record> |
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title | Reaction of Arylsulfonylhydrazones of Aldehydes with α-Magnesio Sulfones. A Novel Olefin Synthesis |
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