SEM-CL系统在材料微结构表征中的应用

IF 2.5 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Rongrong Jiang, Yirong Yao, Jianmin Guan, Jiafeng Shen, Huanming Lu, Ming Li
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引用次数: 0

摘要

阴极发光(CL)表征技术是指通过收集电子束激发下产生的光子信号来评价样品发光特性的技术方法。通过检测发射光的强度和波长,可以识别样品的能带结构和禁带带宽。将CL光谱仪安装在扫描电子显微镜(SEM)上,集高空间分辨率、形态观察、能谱分析(EDS)等功能于一体,对样品进行分析,为某些材料的微观结构分析提供了独特的、不可替代的优势。本文综述了近年来SEM-CL系统在材料微结构表征中的应用,通过典型案例说明了SEM-CL系统在地质矿物、钙钛矿材料、半导体材料、非金属夹杂物、功能陶瓷等材料中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of SEM-CL system in the characterization of material microstructures

Cathodoluminescence (CL) characterization technology refers to a technical approach for evaluating the luminescent properties of samples by collecting photon signals generated under electron beam excitation. By detecting the intensity and wavelength of the emitted light, the energy band structure and forbidden bandwidth of a sample can be identified. After a CL spectrometer is mounted on a scanning electron microscope (SEM), functions are integrated, such as high spatial resolution, morphological observation, and energy-dispersive spectroscopy (EDS) to analyze samples, offering unique and irreplaceable advantages for the microstructural analysis of certain materials. This paper reviews the applications of SEM-CL systems in the characterization of material microstructures in recent years, illustrating the utility of the SEM-CL system in various materials including geological minerals, perovskite materials, semiconductor materials, non-metallic inclusions, and functional ceramics through typical case studies.

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来源期刊
Frontiers of Materials Science
Frontiers of Materials Science MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
4.20
自引率
3.70%
发文量
515
期刊介绍: Frontiers of Materials Science is a peer-reviewed international journal that publishes high quality reviews/mini-reviews, full-length research papers, and short Communications recording the latest pioneering studies on all aspects of materials science. It aims at providing a forum to promote communication and exchange between scientists in the worldwide materials science community. The subjects are seen from international and interdisciplinary perspectives covering areas including (but not limited to): Biomaterials including biomimetics and biomineralization; Nano materials; Polymers and composites; New metallic materials; Advanced ceramics; Materials modeling and computation; Frontier materials synthesis and characterization; Novel methods for materials manufacturing; Materials performance; Materials applications in energy, information and biotechnology.
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