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A Simple Preparation Method for Full-Range Electron Tomography of Nanoparticles and Fine Powders

机译:一种简单的纳米颗粒和细粉末全系电子断层扫描的简单制备方法

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摘要

Electron tomography has become a valuable and widely used tool for studying the three-dimensional nanostructure of materials and biological specimens. However, the incomplete tilt range provided by conventional sample holders limits the fidelity and quantitative interpretability of tomographic images by leaving a “missing wedge” of unknown information in Fourier space. Imaging over a complete range of angles eliminates missing wedge artifacts and dramatically improves tomogram quality. Full-range tomography is usually accomplished using needle-shaped samples milled from bulk material with focused ion beams, but versatile specimen preparation methods for nanoparticles and other fine powders are lacking. In this work, we present a new preparation technique in which powder specimens are supported on carbon nanofibers that extend beyond the end of a tungsten needle. Using this approach, we produced tomograms of platinum fuel cell catalysts and gold-decorated strontium titanate photocatalyst specimens. Without the missing wedge, these tomograms are free from elongation artifacts, supporting straightforward automatic segmentation and quantitative analysis of key materials properties such as void size and connectivity, and surface area and curvature. This approach may be generalized to other samples that can be dispersed in liquids, such as biological structures, creating new opportunities for high-quality electron tomography across disciplines.
机译:电子断层扫描已成为研究材料和生物标本的三维纳米结构的有价值和广泛使用的工具。然而,传统样品支架提供的不完全倾斜范围通过留下傅立叶空间中未知信息的“缺失楔形”来限制断层图像的保真度和定量解释性。在完整范围的角度上成像消除了缺失的楔形伪像,从而大大提高了截面质量。通常使用从散装材料研磨的针状样品以聚焦离子束进行的针状样品来完成全范围的层析术,但缺乏用于纳米颗粒和其他细粉末的多功能样品制备方法。在这项工作中,我们提出了一种新的制备技术,其中粉末样品在碳纳米纤维上延伸到钨针的末端。使用这种方法,我们生产了铂燃料电池催化剂和金装饰钛酸锶光催化剂标本的断层照片。没有缺失的楔形,这些断层图像没有伸长型工件,支持直接的自动分割和定量分析关键材料特性,如空隙尺寸和连接,以及表面积和曲率。这种方法可以推广到其他可以分散在液体(例如生物结构)中的其他样品中,以跨学科的高质量电子断层扫描创造新的机会。

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