持子视角下的原位透射电镜研究。

Toshie Yaguchi, Mia L San Gabriel, Ayako Hashimoto, Jane Y Howe
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引用次数: 0

摘要

在原位透射电镜观察中,不同的试样支架的不同功能起着至关重要的作用。我们在此全面概述了主要类型的持有人,相关技术,以及与广泛使用的加热和气体加热方法有关的案例研究,从它们的最初发展到最新进展。除了传统的方法外,我们还讨论了采用微机电系统(MEMS)芯片进行现场观测的支架的出现。MEMS技术在单个芯片内提供多种功能,从而增强了支架的功能和多功能性。MEMS芯片已被应用于环境电池设计中,实现了不同形状的定制制造。这一创新促进了它们在气体和液体环境中进行现场观察的应用,特别是在催化和电池反应的研究中。我们总结了最近使用原位液体透射电镜进行的一些值得注意的研究。这些研究突出了重大进展,并为MEMS芯片在环境细胞中的应用提供了有价值的见解,以及原位液体TEM在各个研究领域的扩展能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In-situ TEM study from the perspective of holders.

During the in situ transmission electron microscopy (TEM) observations, the diverse functionalities of different specimen holders play a crucial role. We hereby provide a comprehensive overview of the main types of holders, associated technologies and case studies pertaining to the widely employed heating and gas heating methods, from their initial developments to the latest advancement. In addition to the conventional approaches, we also discuss the emergence of holders that incorporate a micro-electro-mechanical system (MEMS) chip for in situ observations. The MEMS technology offers a multitude of functions within a single chip, thereby enhancing the capabilities and versatility of the holders. MEMS chips have been utilized in environmental-cell designs, enabling customized fabrication of diverse shapes. This innovation has facilitated their application in conducting in situ observations within gas and liquid environments, particularly in the investigation of catalytic and battery reactions. We summarize recent noteworthy studies conducted using in situ liquid TEM. These studies highlight significant advancements and provide valuable insights into the utilization of MEMS chips in environmental-cells, as well as the expanding capabilities of in situ liquid TEM in various research domains.

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