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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Phase Transformations in Porous Materials Studied by In Situ Solid-State NMR Spectroscopy and In Situ X-ray Diffraction
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Phase Transformations in Porous Materials Studied by In Situ Solid-State NMR Spectroscopy and In Situ X-ray Diffraction

机译:通过原位固态NMR光谱和原位X射线衍射研究的多孔材料中的相变

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摘要

Studying complex processes in solid phases such as adsorption or phase transitions in situ is the best way to obtain detailed and realistic insights on a molecular level. Besides in situ X-ray diffraction techniques, magic angle spinning (MAS) solid-state NMR spectroscopy is one of the most powerful analytical techniques. The implementation of in situ and operando MAS NMR is however challenging and requires dedicated hardware. We introduce here a new 4.0 mm wide-bore probe that allows for a continuous and well-distributed flow of gaseous adsorbates or reactants through the packed sample, as well as uniform heating of the sample and spinning of the rotor at the magic angle. The combination of both in situ MAS NMR and in situ powder X-ray diffraction allowed us to obtain new insights into two phase transformation mechanisms in crystalline, porous materials, viz. that of aluminophosphate VPI-5 into AlPO4-8 and that of metal-organic frameworks from the MIL-53 family during water adsorption and desorption.
机译:在原位吸附或相变的固相中研究复杂过程是获得分子水平的详细和现实见解的最佳方法。除了原位X射线衍射技术外,魔法角纺(MAS)固态NMR光谱是最强大的分析技术之一。然而,实施原位和Outmando MAS NMR是具有挑战性的,并且需要专用硬件。我们在这里介绍一种新的4.0 mm宽孔探针,其允许通过填充样品的气态吸附物或反应物的连续和良好分布的流动,以及均匀加热样品并在魔角处旋转转子。原位MAS NMR和原位粉末X射线衍射的组合使我们能够在结晶,多孔材料,VIZ中获得新的两相变化机制。在水吸附和解吸期间,铝磷酸铝-5与MIL-53家族的金属有机框架中的那种。

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