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Transmission electron microtomography in soft materials.

机译:柔软材料中的透射电子显微照相。

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摘要

This review summarizes the recent advances in three-dimensional (3D) imaging techniques and their application to polymer nanostructures, for example, microphase-separated structures of block copolymers. We place particular emphasis on the method of transmission electron microtomography (electron tomography for short; hereafter abbreviated as ET). As a result of recent developments in ET, truly quantitative 3D images of polymer nanostructures can now be obtained with subnanometer resolution. The introduction of scanning optics in ET has made it possible to obtain large amounts of 3D data from micrometer-thick polymer specimens by using conventional electron microscopes at a relatively low accelerating voltage, 200 kV. Thus, ET covers structures over a wide range of thicknesses, from a few nanometers to several hundred nanometers, which corresponds to quite an important spatial range for hierarchical polymer nanostructures. ET provides clear 3D images and a wide range of new structural information that cannot be obtained using other methods. Information traditionally derived from conventional microscopy or scattering methods can be directly acquired from 3D volume data. ET is a versatile technique that is not restricted to only polymer applications; it can also be used as a powerful characterization tool in energy applications such as fuel cells.
机译:这篇综述总结了三维(3D)成像技术的最新进展及其在聚合物纳米结构中的应用,例如嵌段共聚物的微相分离结构。我们特别强调透射电子显微照相术(简称电子体层摄影术;以下简称ET)的方法。由于ET的最新发展,现在可以以亚纳米分辨率获得聚合物纳米结构的真正定量3D图像。在ET中引入扫描光学器件后,可以通过使用传统的电子显微镜在相对较低的200 kV加速电压下从微米厚的聚合物样品中获取大量3D数据。因此,ET覆盖了从几纳米到几百纳米的宽范围的厚度的结构,这对应于分级聚合物纳米结构的相当重要的空间范围。 ET提供了清晰的3D图像和各种其他方法无法获得的新结构信息。传统上可以从常规显微镜或散射方法获得的信息可以直接从3D体积数据中获取。 ET是一种通用技术,不仅限于聚合物应用。它也可用作燃料应用等能源应用中的强大表征工具。

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