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使用最佳明场扫描透射电子显微镜对沸石中的局部原子结构进行直接成像。

Direct imaging of local atomic structures in zeolite using optimum bright-field scanning transmission electron microscopy.

作者信息

Ooe Kousuke, Seki Takehito, Yoshida Kaname, Kohno Yuji, Ikuhara Yuichi, Shibata Naoya

机构信息

Institute of Engineering Innovation, School of Engineering, the University of Tokyo, Yayoi 2-11-16, Bunkyo, Tokyo 113-0032, Japan.

Nanostructures Research Laboratory, Japan Fine Ceramics Center, Mutsuno 2-4-1, Atsuta, Nagoya 456-8587, Japan.

出版信息

Sci Adv. 2023 Aug 2;9(31):eadf6865. doi: 10.1126/sciadv.adf6865.

Abstract

Zeolites are used in industries as catalysts, ion exchangers, and molecular sieves because of their unique porous atomic structures. However, direct observation of zeolitic local atomic structures via electron microscopy is difficult owing to low electron irradiation resistance. Subsequently, their fundamental structure-property relationships remain unclear. A low-electron-dose imaging technique, optimum bright-field scanning transmission electron microscopy (OBF STEM), has recently been developed. It reconstructs images with a high signal-to-noise ratio and a dose efficiency approximately two orders of magnitude higher than that of conventional methods. Here, we performed low-dose atomic-resolution OBF STEM observations of two types of zeolite, effectively visualizing all atomic sites in their frameworks. In addition, we visualized the complex local atomic structure of the twin boundaries in a faujasite (FAU)-type zeolite and Na ions with low occupancy in eight-membered rings in a Na-Linde Type A (LTA) zeolite. The results of this study facilitate the characterization of local atomic structures in many electron beam-sensitive materials.

摘要

由于其独特的多孔原子结构,沸石在工业中用作催化剂、离子交换剂和分子筛。然而,由于低电子辐照抗性,通过电子显微镜直接观察沸石的局部原子结构很困难。因此,它们的基本结构-性能关系仍不清楚。最近开发了一种低电子剂量成像技术,即最佳明场扫描透射电子显微镜(OBF STEM)。它能够重建具有高信噪比的图像,并且剂量效率比传统方法高约两个数量级。在这里,我们对两种类型的沸石进行了低剂量原子分辨率的OBF STEM观察,有效地可视化了它们骨架中的所有原子位点。此外,我们还可视化了八面沸石(FAU)型沸石中孪晶界的复杂局部原子结构以及钠A型(LTA)沸石中八元环中占有率低的钠离子。这项研究的结果有助于表征许多对电子束敏感材料中的局部原子结构。

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