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A novel methodology to study nanoporous alumina by small-angle neutron scattering

机译:小角度中子散射研究纳米多孔氧化铝的新方法

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摘要

Nanoporous anodic aluminium oxide (AAO) membranes are promising host systems for confinement of condensed matter. Characterizing their structure and composition is thus of primary importance for studying the behavior of confined objects. Here a novel methodology to extract quantitative information on the structure and composition of well defined AAO membranes by combining small-angle neutron scattering (SANS) measurements and scanning electron microscopy (SEM) imaging is reported. In particular, (i) information about the pore hexagonal arrangement is extracted from SEM analysis, (ii) the best SANS experimental conditions to perform reliable measurements are determined and (iii) a detailed fitting method is proposed, in which the probed length in the fitting model is a critical parameter related to the longitudinal pore ordering. Finally, to validate this strategy, it is applied to characterize AAOs prepared under different conditions and it is shown that the experimental SANS data can be fully reproduced by a core/shell model, indicating the existence of a contaminated shell. This original approach, based on a detailed and complete description of the SANS data, can be applied to a variety of confining media and will allow the further investigation of condensed matter under confinement.
机译:纳米多孔阳极氧化铝(AAO)膜是用于封闭冷凝物的有前途的宿主系统。因此,表征其结构和组成对于研究受限物体的行为至关重要。本文报道了一种通过结合小角度中子散射(SANS)测量和扫描电子显微镜(SEM)成像来提取清晰定义的AAO膜的结构和成分的定量信息的新颖方法。特别是(i)从SEM分析中提取有关孔六角形排列的信息,(ii)确定执行可靠测量的最佳SANS实验条件,(iii)提出了详细的拟合方法,其中在拟合模型是与纵向孔序有关的关键参数。最后,为验证该策略,将其应用于表征在不同条件下制备的AAO,并表明可通过核/壳模型完全再现实验性SANS数据,表明存在受污染的壳。这种原始方法基于对SANS数据的详细完整描述,可以应用于各种密闭介质,并且可以对密闭条件下的冷凝物进行进一步研究。

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