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用于纳米材料表征的微观技术:简要综述

Microscopic Techniques for Nanomaterials Characterization: A Concise Review.

作者信息

Aziz Abbas, Shaikh Huma, Abbas Amna, Zehra Kissa E, Javed Bakhtawar

机构信息

National Centre of Excellence in Analytical Chemistry, University of Sindh, Jamshoro, Pakistan.

USPCAS-W, Mehran University of Engineering and Technology, Jamshoro, Pakistan.

出版信息

Microsc Res Tech. 2025 May;88(5):1599-1614. doi: 10.1002/jemt.24799. Epub 2025 Jan 8.

Abstract

Nanomaterials have been gaining interest due to their remarkable properties at the nanoscale. The surface area of particles becomes high at the nanoscale because of this virtue, they have been used in a bundle of applications like electronics, biomedical, agriculture, wastewater treatment, semiconductor industry, cosmetics, drug delivery, paints, and so forth. The morphology (size and shape) of nanomaterials plays an important role because each application requires the appropriate morphology for better performance. Generally, there are a few microscopic techniques used to characterize nanomaterial morphology, AFM (atomic force microscopy), TEM (transmission electron microscopy), SEM (scanning electron microscopy), and others. In this review, the principles, operations, advantages, and limitations of these microscopic techniques for nanomaterial morphology characterization have been briefly discussed. The existing difficulties and path forward for the development of these techniques have also been highlighted.

摘要

由于纳米材料在纳米尺度上具有卓越的性能,它们一直备受关注。由于这一特性,纳米尺度下颗粒的表面积变得很大,因此它们已被用于一系列应用中,如电子、生物医学、农业、废水处理、半导体工业、化妆品、药物递送、涂料等等。纳米材料的形态(尺寸和形状)起着重要作用,因为每种应用都需要合适的形态以实现更好的性能。一般来说,有几种微观技术用于表征纳米材料的形态,如原子力显微镜(AFM)、透射电子显微镜(TEM)、扫描电子显微镜(SEM)等。在这篇综述中,简要讨论了这些用于纳米材料形态表征的微观技术的原理、操作、优点和局限性。还强调了这些技术发展中存在的困难和前进方向。

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