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首页> 外文期刊>Journal of Fluorine Chemistry >Amplification of chirality as a pathway to biological homochirality
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Amplification of chirality as a pathway to biological homochirality

机译:手性放大作为生物学同手性的途径

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Amplification of enantiomeric enrichment is a key feature for the chemical evolution of biological homochirality from the origin of chirality. The aggregations of the enantiomers by diastereomeric interactions enable the modification of their enantiomeric excess during some chemical processes. Fluorine-containing chiral compounds possess large amplification effect via distillation, sublimation and achiral chromatography by self-disproportionation. Asymmetric amplifications in enantioselective catalysis occur by the differential formation and reactivity between homochiral and heterochiral aggregate in solution. We described the amplification of ee in asymmetric autocatalysis of 5-pyrimidyl alkanol in the reaction between diisopropylzinc and pyrimidine-5-carbaldehdye. During the reactions extremely low ee (ca. 0.00005% ee) can be amplified to achieve more than 99.5% ee. Since the proposed origins of chirality such as CPL, quartz, chiral organic crystals of achiral compounds and statistical fluctuation of ee can initiate the asymmetric autocatalysis with amplification of ee, the proposed origin of chirality can be linked with enantiopure organic compound in conjunction with amplification of ee by asymmetric autocatalysis. In addition, we described that the carbon isotopically chiral compound triggers the asymmetric autocatalysis of 5-pyrimiodyl alkanol to afford the enantioenriched product with the absolute configuration correlated with that of carbon isotope chirality, that is, isotope chirality including hydrogen isotopes can control the enantioselectivity of asymmetric addition of alkyl metal reagent to aldehyde.
机译:对映异构体富集的扩增是从手性起源到生物同手性化学演化的关键特征。通过非对映异构体相互作用对映体的聚集使得在某些化学过程中能够改变其对映体过量。含氟手性化合物通过蒸馏,升华和通过自歧化的非手性色谱具有较大的扩增作用。对映选择性催化中的不对称扩增通过溶液中同手性和异手性聚集体之间的差异形成和反应性而发生。我们描述了在二异丙基锌与嘧啶-5-碳二醛之间的反应中5-嘧啶基烷醇的不对称自催化中ee的扩增。在反应过程中,极低的ee(约0.00005%ee)可以被放大以达到99.5%ee以上。由于提议的手性来源,例如CPL,石英,非手性化合物的手性有机晶体和ee的统计波动,都可以通过ee的扩增引发不对称自催化作用,因此,提议的手性的来源可以与对映体纯的有机化合物结合进行扩增。 ee通过不对称自催化作用。此外,我们描述了碳同位素手性化合物触发了5-嘧啶基烷醇的不对称自催化作用,从而提供了具有与碳同位素手性相关的绝对构型的对映体富集产物,也就是说,包括氢同位素在内的同位素手性可以控制氢的手性。烷基金属试剂与醛的不对称加成。

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