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Correlation Between the Extent of Catalytic Activity and Charge Density of Montmorillonites

机译:蒙脱土的催化活性程度与电荷密度之间的相关性

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摘要

The clay mineral montmorillonite is a member of the phyllosilicate group of minerals, which has been detected on martian soil. Montmorillonite catalyzes the condensation of activated monomers to form RNA-like oligomers. Extent of catalysis, that is, the yield of oligomers, and the length of the longest oligomer formed in these reactions widely varies with the source of montmorillonite (i.e., the locality where the mineral is mined). This study was undertaken to establish whether there exists a correlation between the extent of catalytic property and the charge density of montmorillonites. Charge density was determined by saturating the montmorillonites with alkyl ammonium cations that contained increasing lengths of alkyl chains, [CH_3-(CH_2)_n-NH_3]~+, where n = 3-16 and 18, and then measuring d_(001), interlayer spacing of the resulting montmorillonite-alkyl ammonium-montmorillonite complex by X-ray diffractometry (XRD).rnResults demonstrate that catalytic activity of montmorillonites with lower charge density is superior to that of higher charge density montmorillonite. They produce longer oligomers that contain 9 to 10 monomer units, while montmorillonite with high charge density catalyzes the formation of oligomers that contain only 4 monomer units.rnThe charge density of montmorillonites can also be calculated from the chemical composition if elemental analysis data of the pure mineral are available. In the next mission to Mars, CheMin (Chemistry and Mineralogy), a combined X-ray diffraction/X-ray fluorescence instrument, will provide information on the mineralogical and elemental analysis of the samples. Possible significance of these results for planning the future missions to Mars for the search of organic compounds and extinct or extant life is discussed.
机译:粘土矿物蒙脱石是在火星土壤中发现的矿物的页硅酸盐类的一种。蒙脱石催化活化的单体的缩合以形成类似RNA的低聚物。在这些反应中催化的程度,即低聚物的产率,以及形成的最长的低聚物的长度随蒙脱石的来源(即矿物的开采地)而广泛地变化。进行该研究以确定在蒙脱石的催化性能的程度和电荷密度之间是否存在相关性。电荷密度的确定方法是,将蒙脱土用烷基链阳离子[CH_3-(CH_2)_n-NH_3]〜+(其中n = 3-16和18)增加的烷基铵阳离子饱和,然后测量d_(001), X射线衍射(XRD)分析得到的蒙脱石-烷基铵-蒙脱石配合物的层间间距。结果表明,荷电密度较低的蒙脱土的催化活性优于荷电密度较高的蒙脱土。它们会产生更长的包含9至10个单体单元的低聚物,而高电荷密度的蒙脱石则催化仅包含4个单体单元的低聚物的形成.rn如果纯净的元素分析数据也可以从化学组成中计算出蒙脱石的电荷密度矿物可用。在前往火星的下一个任务中,Chemin(化学和矿物学)是一种组合的X射线衍射/ X射线荧光仪器,将提供有关样品的矿物学和元素分析的信息。讨论了这些结果对计划未来的火星搜寻有机化合物和灭绝或现存生命的可能意义。

著录项

  • 来源
    《Astrobiology》 |2010年第7期|p.743-749|共7页
  • 作者单位

    Carl Sagan Center, SETI Institute, Mountain View, California, USA National Institutes of Health 10 Center Drive 3N322 Bethesda, MD 20892 USA;

    rnCompetence Center for Material Moisture and Institute for Functional Interfaces at Karlsruhe Institute of Technology (KIT), Karlsruhe, Germany;

    rnCompetence Center for Material Moisture and Institute for Functional Interfaces at Karlsruhe Institute of Technology (KIT), Karlsruhe, Germany;

    rnInstirute of Inorganic Chemistry, University of Kiel, Kiel, Germany;

    rnCompetence Center for Material Moisture and Institute for Functional Interfaces at Karlsruhe Institute of Technology (KIT), Karlsruhe, Germany;

  • 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

    mars; origin of life; montmorillonite; mineral catalysis; layer charge density; X-ray diffractometry;

    机译:火星;生命的起源蒙脱石矿物催化层电荷密度;X射线衍射;
  • 入库时间 2022-08-17 13:09:37

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