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The fate of amino acids adsorbed on mineral matter

机译:氨基酸吸附在矿物质上的命运

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摘要

We present here selected results recently obtained on the molecular characterization of amino acids adsorption on oxide minerals and their further polymerization by thermal activation, in the general frame of assessing Bernal's hypothesis on the origin of biopolymers on mineral surfaces. Adsorption mechanisms may be identified by a combination of vibrational spectroscopy, ~(13)C solid-state NMR, and molecular modeling. Depending on a particular amino acid, the oxide surface investigated, and the water activity during adsorption (i.e., whether it is carried out from the gas phase or from an aqueous solution), contributions from electrostatic adsorption, outer-sphere and inner-sphere (coordination) complexes may be observed. These mechanisms result in significant adsorption selectivities from equimolar mixtures of different amino acids. Upon thermal activation at moderate temperatures (150-160 ℃), clean polymerization events occur and can easily be observed by thermogravimetric analysis. There are some hints of selectivity in this step too. The water activity during thermal treatment plays an important role for the thermodynamics of polymerization.
机译:我们在此介绍最近评估的氨基酸吸附在氧化物矿物上的分子表征及其通过热活化进一步聚合所获得的选定结果,这些结果是在评估伯纳尔关于矿物表面生物聚合物起源的假设的总体框架中得出的。可以通过振动光谱,〜(13)C固态NMR和分子模型的组合来确定吸附机理。根据特定的氨基酸,所研究的氧化物表面以及吸附过程中的水活度(即,是从气相还是从水溶液中进行),静电吸附,外球和内球的作用(可以观察到复合物。这些机理导致不同氨基酸等摩尔混合物的显着吸附选择性。在中等温度(150-160℃)下进行热活化后,会发生干净的聚合反应,并且可以通过热重分析轻松观察到。在此步骤中也有一些选择性提示。热处理过程中的水活度对聚合的热力学起着重要作用。

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  • 来源
    《Planetary and space science》 |2009年第4期|460-467|共8页
  • 作者单位

    UPMC University Paris 6, Laboratoire de Reactivite de Surface, Case courrier 178, 4 Place Jussieu, 75252 Paris Cedex 05, France CNRS, UMR 7609, France;

    UPMC University Paris 6, Laboratoire de Reactivite de Surface, Case courrier 178, 4 Place Jussieu, 75252 Paris Cedex 05, France CNRS, UMR 7609, France;

    UPMC University Paris 6, Laboratoire de Reactivite de Surface, Case courrier 178, 4 Place Jussieu, 75252 Paris Cedex 05, France CNRS, UMR 7609, France;

    UPMC University Paris 6, Laboratoire de Reactivite de Surface, Case courrier 178, 4 Place Jussieu, 75252 Paris Cedex 05, France CNRS, UMR 7609, France;

    UPMC University Paris 6, Laboratoire de Reactivite de Surface, Case courrier 178, 4 Place Jussieu, 75252 Paris Cedex 05, France CNRS, UMR 7609, France National Center for Nanoscience and Nanotechnology of China, Zhongguancun North First Tiao No. 11, 100190, Beijing, PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    amino acids; oxide minerals; adsorption mechanism; polymerization; selectivity;

    机译:氨基酸;氧化物矿物;吸附机理聚合;选择性;

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