Atomic force microscopy in energetic materials research: A review

IF 3.3 Q2 CHEMISTRY, MULTIDISCIPLINARY
Ekaterina K. Kosareva, Alla N. Pivkina, Nikita V. Muravyev
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引用次数: 4

Abstract

Modern trends in the development of energetic materials include the various methods of particle surface modification and the widespread use of nanosized powders. Atomic force microscopy (AFM) is a useful, but often overlooked advanced tool for the investigation of surface, subsurface, and interface properties of energetic compounds. This review highlights the diverse applications of AFM, and provides the various methods of AFM to investigate energetic materials, along with sample preparation techniques. We show that AFM has not only the value for imaging the surface, but also the capability to manipulate and perform the real experiments at the nanoscale. It could be a mechanical stimulation of the crystal and observation of the surface changes after it, or the attachment of the energetic crystal to the tipless cantilever, which approaches the polymeric sample to derive the adhesion force between two materials. We anticipate that over time the AFM-based techniques will be used more and more actively in the research of energetic materials and will benefit our better understanding of the processes taking place at interfaces and surfaces of energetic compounds.

Abstract Image

原子力显微镜在含能材料研究中的应用综述
含能材料的现代发展趋势包括各种颗粒表面改性方法和纳米粉末的广泛使用。原子力显微镜(AFM)是一种有用的,但经常被忽视的高级工具,用于研究含能化合物的表面、亚表面和界面性质。本文重点介绍了原子力显微镜的各种应用,并提供了原子力显微镜研究含能材料的各种方法,以及样品制备技术。研究表明,原子力显微镜不仅具有表面成像的价值,而且具有在纳米尺度上操作和进行实际实验的能力。它可以是对晶体进行机械刺激并观察其表面变化,也可以是将高能晶体附着在靠近聚合物样品的无端悬臂上,从而推导出两种材料之间的粘附力。我们预计,随着时间的推移,基于afm的技术将越来越多地应用于含能材料的研究,并将有助于我们更好地理解发生在含能化合物界面和表面的过程。
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来源期刊
Energetic Materials Frontiers
Energetic Materials Frontiers Materials Science-Materials Science (miscellaneous)
CiteScore
6.90
自引率
0.00%
发文量
42
审稿时长
12 weeks
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