伊莫长石纳米管的原子结构:用x射线散射实验和分子动力学模拟重新研究了一个50年前的问题

IF 5.3 2区 地球科学 Q2 CHEMISTRY, PHYSICAL Applied Clay Science Pub Date : 2023-09-15 DOI:10.1016/j.clay.2023.107043
Arianna D'Angelo , Erwan Paineau , Stéphan Rouzière , Érik Elkaim , Claire Goldmann , Damien Toquer , Stéphane Rols , Pascale Launois
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引用次数: 1

摘要

伊莫长石是一种粘土纳米管,由弯曲的二八面体三边石样层[OH3AlO3]和孤立的OHSiO3四面体组成,由三个相互氧原子连接到八面体上,圆周上有N个硅四面体。合成伊莫长石的N值普遍大于天然伊莫长石,这可能与合成方法有关。然而,在过去的五十年中,文献报道的N值是不确定的或不一致的。在这项工作中,我们重新研究了N = 12的合成伊莫长石纳米管的结构。我们对悬浮液中的纳米管进行了x射线散射实验,并在相同的样品上作为干粉去除水。衍射图的分析是基于分子动力学模拟,使我们能够获得不同N值的伊莫长石纳米管。我们发现样品是由N = 13和N = 14的纳米管混合物制成的。我们的研究指出,在干燥状态下,成束组装的纳米管会发生强烈的变形,这在分析测量的衍射图时必须考虑到。
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The atomic structure of imogolite nanotubes: A 50 years old issue reinvestigated by X-ray scattering experiments and molecular dynamics simulations

Imogolites are clay nanotubes consisting of a curved di-octahedral gibbsite-like layer [OH3AlO3] and of isolated OHSiO3 tetrahedra connected by three mutual oxygen atoms to the octahedra, with N silicon tetrahedra along a circumference. There is a consensus that synthetic imogolites have a larger N value than natural ones, which may depend on the method of synthesis. However, N values reported in the literature over the last fifty years are given as uncertain or are not consistent. In this work, we reinvestigate the structure of synthetic imogolite nanotubes for which a value of N = 12 was reported. We perform X-ray scattering experiments on nanotubes in suspension and on the same sample as a dry powder after removing water. The analysis of diffractograms is based on Molecular Dynamics simulations allowing us to obtain imogolite nanotubes with different N values. We find that the sample is made of a mixture of nanotubes with N = 13 and N = 14. Our study points towards strong deformation of the nanotubes, assembled in bundles, in their dry state, which has to be taken into account in the analysis of measured diffractograms.

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来源期刊
Applied Clay Science
Applied Clay Science 地学-矿物学
CiteScore
10.30
自引率
10.70%
发文量
289
审稿时长
39 days
期刊介绍: Applied Clay Science aims to be an international journal attracting high quality scientific papers on clays and clay minerals, including research papers, reviews, and technical notes. The journal covers typical subjects of Fundamental and Applied Clay Science such as: • Synthesis and purification • Structural, crystallographic and mineralogical properties of clays and clay minerals • Thermal properties of clays and clay minerals • Physico-chemical properties including i) surface and interface properties; ii) thermodynamic properties; iii) mechanical properties • Interaction with water, with polar and apolar molecules • Colloidal properties and rheology • Adsorption, Intercalation, Ionic exchange • Genesis and deposits of clay minerals • Geology and geochemistry of clays • Modification of clays and clay minerals properties by thermal and physical treatments • Modification by chemical treatments with organic and inorganic molecules(organoclays, pillared clays) • Modification by biological microorganisms. etc...
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