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1T/2H MoS2 及其在能源应用中的碳复合材料的特性综述。

Characterization of 1T/2H MoS and Their Carbon Composites for Energy Applications, a Review.

机构信息

Electrochemical Innovation Laboratory (EIL), Department of Chemical Engineering, University College London (UCL), Gower Street, London WC1E 6BT, U.K.

University College London (UCL), Gower St, London WC1E 6BTU.K.

出版信息

ACS Nano. 2023 Mar 28;17(6):5163-5186. doi: 10.1021/acsnano.2c08913. Epub 2023 Mar 16.

Abstract

The growing interest in the development of next-generation net zero energy systems has led to the expansion of molybdenum disulfide (MoS) research in this area. This activity has resulted in a wide range of manufacturing/synthesis methods, controllable morphologies, diverse carbonaceous composite structures, a multitude of applicable characterization techniques, and multiple energy applications for MoS. To assess the literature trends, 37,347 MoS research articles from Web of Science were text scanned to classify articles according to energy application research and characterization techniques employed. Within the review, characterization techniques are grouped under the following categories: morphology, crystal structure, composition, and chemistry. The most common characterization techniques identified through text scanning are recommended as the base fingerprint for MoS samples. These include: scanning electron microscopy (SEM), X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), and Raman spectroscopy. Similarly, XPS and Raman spectroscopy are suggested for 2H or 1T MoS phase confirmation. We provide guidance on the collection and presentation of MoS characterization data. This includes how to effectively combine multiple characterization techniques, considering the sample area probed by each technique and their statistical significance, and the benefit of using reference samples. For ease of access for future experimental comparison, key numeric MoS characterization values are tabulated and major literature discrepancies or currently debated characterization disputes are highlighted.

摘要

对开发下一代净零能耗系统的兴趣日益浓厚,促使人们在这一领域对二硫化钼(MoS)展开了广泛的研究。这一研究活动带来了各种制造/合成方法、可控形态、多种多样的碳基复合材料结构、众多适用的表征技术,以及 MoS 在多种能源应用中的应用。为了评估文献趋势,从 Web of Science 中对 37347 篇 MoS 研究文章进行了文本扫描,以根据能源应用研究和采用的表征技术对文章进行分类。在这篇综述中,将表征技术分为以下几类:形态、晶体结构、组成和化学。通过文本扫描确定的最常见的表征技术被推荐为 MoS 样品的基本特征指纹。其中包括:扫描电子显微镜(SEM)、X 射线衍射(XRD)、X 射线光电子能谱(XPS)和拉曼光谱。同样,建议使用 XPS 和拉曼光谱来确认 2H 或 1T MoS 相。我们提供了 MoS 表征数据的收集和呈现指导。其中包括如何有效地结合多种表征技术,考虑到每种技术所探测的样品面积及其统计学意义,以及使用参考样品的好处。为了便于未来的实验比较,我们还列出了关键的 MoS 表征数值,并突出了主要的文献差异或当前有争议的表征问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b12/10062033/f755b818b112/nn2c08913_0001.jpg

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