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Synthetic Studies on Jasmonoids(¥°): Jasmone, Dihydrojasmone, and Tetrahydrojasmone

机译:茉莉酮类(元)的合成研究:茉莉酮,二氢茉莉酮和四氢茉莉酮

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Facile and efficient syntheses of terpenic perfumeries cis-jasmone, dihydrojasmone, and tetrahydrojasmone have been investigated. Cis-jasmone was synthesized by successive metallation followed by alkylation of acetone N,N-dimethylhydrazone with (Z)-2-penten-1-yl tosylate (or 2-pentyn-1-yl tosylate) and propylene oxide in one flask to give a ketonic alcohol, which was oxidized to the corresponding diketone, followed by base-catalyzed intramolecular aldol condensation to give a regioselective cyclization product. Dihydrojasmone and tetrahydrojasmone could be conveniently obtained from 2-octanone. The dimethylhydrazone of the ketone was lithiated with butyllithium and reacted with propylene oxide to give a ketonic alcohol, which was oxidized to a diketone, followed by base-catalyzed intramolecular cyclization to afford dihydrojasmone. Tetrahydrojasmone was prepared by converting the ketonic alcohol into corresponding iodoketone, followed by base-catalyzed intramolecular cycloalkylation to furnish an odoriferous product.
机译:已经研究了简便有效地合成萜烯香料顺式-茉莉酮,二氢茉莉酮和四氢茉莉酮的方法。顺式茉莉酮的合成方法是在一个烧瓶中依次进行金属化反应,然后将丙酮N,N-二甲基hydr与(Z)-2-戊烯基甲苯磺酸酯(或2-戊炔基甲苯磺酸酯)和环氧丙烷烷基化,得到将酮醇氧化成相应的二酮,然后进行碱催化的分子内醇醛缩合,得到区域选择性的环化产物。二氢茉莉酮和四氢茉莉酮可方便地从2-辛酮获得。将该酮的二甲基与丁基锂锂化,并与环氧丙烷反应,得到酮醇,将其氧化成二酮,然后进行碱催化的分子内环化,得到二氢茉莉酮。通过将酮醇转化为相应的碘酮,然后进行碱催化的分子内环烷基化以提供有气味的产物,来制备四氢茉莉酮。

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