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Theoretical study of the asymmetric phase-transfer mediated epoxidation of chalcone catalyzed by chiral crown ethers derived from monosaccharides

机译:单糖衍生的手性冠醚催化查尔酮不对称相转移介导环氧化的理论研究

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摘要

The synthesis of a novel, optically active crown ether derived from alpha-D-altropyranoside is described. A significantly different asymmetric induction was generated by the alpha-D-glucopyranoside-, alpha-D-mannopyranoside- and alpha-D-altropyranoside-based chiral crown catalysts in the epoxidation of trans-chalcone with tert-butyl hydroperoxide under phase-transfer catalytic conditions. It was shown that absolute configuration of the crown-ring fused carbon atoms of the monosaccharides has a great impact on the enantioselectivity. The asymmetric induction could be well explained by considering the possible mechanistic pathway. Molecular modeling (MCMM) and subsequent DFT calculations - in accordance with the experimental results - indicate that the use of glucopyranoside-based catalyst 1 and that of mannopyranoside-based crown ether 2 results in the preferred formation of the opposite antipodes (2R,3S and 2S,3R, respectively) of the corresponding epoxyketone. At the same time, practically no asymmetric induction was proved if altropyranoside-based crown 3 is applied as the catalyst. The computational results are in qualitative agreement with the experimental data
机译:描述了衍生自α-D-altropyranoside的新型光学活性冠醚的合成。在相转移催化下,叔查尔酮与叔丁基氢过氧化物的环氧化查尔酮环氧化反应中,基于α-D-吡喃葡萄糖苷,基于α-D-甘露吡喃糖苷和基于α-D-α-吡喃醛糖苷的手性冠催化剂产生了明显不同的不对称诱导。条件。结果表明,单糖的冠环稠合碳原子的绝对构型对对映选择性有很大影响。通过考虑可能的机理途径可以很好地解释不对称感应。分子模拟(MCMM)和随后的DFT计算-根据实验结果-表明使用基于吡喃吡喃糖苷的催化剂1和基于甘露吡喃糖苷的冠醚2会导致形成相对的对映体(2R,3S和分别为2S,3R)的相应环氧酮。同时,如果将基于阿拉吡喃糖苷的冠3用作催化剂,则几乎没有证明不对称诱导。计算结果与实验数据基本吻合

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