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像石英这样的对映体晶体能在地球上同手性的起源中发挥作用吗?

Can enantiomorphic crystals like quartz play a role in the origin of homochirality on earth?

作者信息

Klabunovskii E I

机构信息

Zelinskii Institute of Organic Chemistry, Russian Academy of Sciences, Moscow, Russia.

出版信息

Astrobiology. 2001 Summer;1(2):127-31. doi: 10.1089/153110701753198891.

Abstract

This communication reviews the possible actions of enantiomorphic crystals on the surface of Earth as sources of homochirality of organic compounds. The discovery of asymmetric adsorption and asymmetric catalysis involving optically active quartz crystals has led some authors to conclude that this source of asymmetry played an important role as a source of homochirality in nature, a concept that later proved erroneous. Moreover, data regarding the preponderance in nature of l-quartz crystals have been used to confirm calculations of the parity violation energy difference (PVED) for l-quartz and, hence, to explain the prevalence of L-amino acids and D-sugars in living matter. As discussed here, quartz and other enantiomorphs such as sodium chlorate can produce chiral intermediates active in autocatalytical processes. Our most recent compilation of the literature, however, reveals that the distribution of d- and l-quartz crystals at the surface of the Earth when all possible locations are included is quite random. Although quartz can serve as an effective asymmetric inductor in autocatalytic processes, it cannot be the source of homochirality of living matter because of the random occurrence of the two types of enantiomorphs. The calculations of PVED values for quartz therefore lack a sound physical basis.

摘要

本通讯综述了地球表面对映体晶体作为有机化合物同手性来源的可能作用。涉及旋光性石英晶体的不对称吸附和不对称催化的发现,使得一些作者得出结论,这种不对称来源在自然界作为同手性来源发挥了重要作用,这一概念后来被证明是错误的。此外,关于左旋石英晶体在自然界占优势的数据,已被用于确认左旋石英的宇称破坏能量差(PVED)的计算,从而解释了生物体内L-氨基酸和D-糖的普遍存在。如本文所讨论的,石英和其他对映体如氯酸钠可以产生在自催化过程中具有活性的手性中间体。然而,我们最近对文献的汇编表明,当包括所有可能位置时,地球表面右旋和左旋石英晶体的分布是相当随机的。尽管石英在自催化过程中可以作为有效的不对称诱导剂,但由于两种对映体的随机出现,它不可能是生物同手性的来源。因此,石英的PVED值计算缺乏可靠的物理基础。

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