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Nanoscale Chemical Imaging of Zeolites Using Atom Probe Tomography

机译:使用原子探针层析成像技术对沸石进行纳米化学成像。

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摘要

Understanding structure–composition–property relationships in zeolite‐based materials is critical to engineering improved solid catalysts. However, this can be difficult to realize as even single zeolite crystals can exhibit heterogeneities spanning several orders of magnitude, with consequences for, for example, reactivity, diffusion as well as stability. Great progress has been made in characterizing these porous solids using tomographic techniques, though each method has an ultimate spatial resolution limitation. Atom probe tomography (APT) is the only technique so far capable of producing 3D compositional reconstructions with sub‐nanometer‐scale resolution, and has only recently been applied to zeolite‐based catalysts. Herein, we discuss the use of APT to study zeolites, including the critical aspects of sample preparation, data collection, assignment of mass spectral peaks including the predominant CO peak, the limitations of spatial resolution for the recovery of crystallographic information, and proper data analysis. All sections are illustrated with examples from recent literature, as well as previously unpublished data and analyses to demonstrate practical strategies to overcome potential pitfalls in applying APT to zeolites, thereby highlighting new insights gained from the APT method.
机译:了解沸石基材料的结构,组成和性质之间的关系对于设计改良的固体催化剂至关重要。然而,这可能难以实现,因为甚至单个沸石晶体也可能表现出跨越几个数量级的异质性,从而对例如反应性,扩散以及稳定性造成影响。尽管每种方法都有最终的空间分辨率限制,但在使用层析成像技术表征这些多孔固体方面已取得了巨大进展。迄今为止,原子探针层析成像(APT)技术是唯一能够产生亚纳米级分辨率的3D成分重建的技术,并且直到最近才应用于基于沸石的催化剂。在这里,我们讨论了使用APT研究沸石的方法,包括样品制备,数据收集,包括主要CO峰在内的质谱峰的分配,结晶学信息恢复的空间分辨率的局限以及适当的数据分析等关键方面。 。所有部分均以最近文献中的例子以及以前未发表的数据和分析进行了说明,以展示实用的策略来克服将APT应用于沸石的潜在陷阱,从而强调从APT方法获得的新见解。

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