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首页> 外文期刊>Astrobiology >Spontaneous Mirror Symmetry Breaking in the Limited Enantioselective Autocatalysis Model:Abyssal Hydrothermal Vents as Scenario for the Emergence of Chirality in Prebiotic Chemistry
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Spontaneous Mirror Symmetry Breaking in the Limited Enantioselective Autocatalysis Model:Abyssal Hydrothermal Vents as Scenario for the Emergence of Chirality in Prebiotic Chemistry

机译:有限的对映选择性自动催化模型中的自发镜像对称性破坏:深渊热液喷口作为益生元化学中手性出现的场景

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摘要

The emergence of chirality in enantioselective autocatalysis for compounds unable to transform according to the Frank-like reaction network is discussed with respect to the controversial limited enantioselectivity (LES) model composed of coupled enantioselective and non-enantioselective autocatalyses. The LES model cannot lead to spontaneous mirror symmetry breaking (SMSB) either in closed systems with a homogeneous temperature distribution or in closed systems with a stationary non-uniform temperature distribution. However, simulations of chemical kinetics in a two-compartment model demonstrate that SMSB may occur if both autocatalytic reactions are spatially separated at different temperatures in different compartments but coupled under the action of a continuous internal flow. In such conditions, the system can evolve, for certain reaction and system parameters, toward a chiral stationary state; that is, the system is able to reach a bifurcation point leading to SMSB. Numerical simulations in which reasonable chemical parameters have been used suggest that an adequate scenario for such a SMSB would be that of abyssal hydrothermal vents, by virtue of the typical temperature gradients found there and the role of inorganic solids mediating chemical reactions in an enzyme-like role.
机译:关于有争议的受限对映选择性(LES)模型,该模型由对映选择性和非对映选择性自催化耦合组成,讨论了对映体不能根据Frank-like反应网络转化的化合物的手性的手性的出现。 LES模型在具有均匀温度分布的封闭系统或具有固定非均匀温度分布的封闭系统中都不会导致自发的镜像对称性破坏(SMSB)。但是,在两室模型中进行的化学动力学模拟表明,如果两个自动催化反应在不同温度在不同室中在空间上分开,但在连续内部流动的作用下耦合,则可能会发生SMSB。在这样的条件下,对于某些反应和系统参数,系统可以向手性固定态发展。也就是说,系统能够到达导致SMSB的分叉点。使用合理的化学参数的数值模拟表明,由于存在这样的典型温度梯度以及无机固体在类似酶的介质中起着化学作用,因此这种SMSB的合适方案是深海热液喷口。角色。

著录项

  • 来源
    《Astrobiology》 |2013年第2期|132-142|共11页
  • 作者单位

    Institute of Cosmos Science, University of Barcelona (IEEC-UB), Barcelona, Spain, Department of Organic Chemistry University of Barcelona c. Marti i Franques 1 08028-Barcelona Catalonia Spain;

    Department of Organic Chemistry, University of Barcelona, Barcelona, Spain,Institute of Cosmos Science, University of Barcelona (IEEC-UB), Barcelona, Spain;

    Department of Organic Chemistry, University of Barcelona, Barcelona, Spain,Institute of Cosmos Science, University of Barcelona (IEEC-UB), Barcelona, Spain;

    Department of Organic Chemistry, University of Barcelona, Barcelona, Spain;

    Centro de Astrobiologia (CSIC-INTA), Madrid, Spain;

    Centro de Astrobiologia (CSIC-INTA), Madrid, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    homochirality; prebiotic chemistry;

    机译:同质性益生元化学;

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