Raman Spectroscopy and Mapping Analysis of Low-Dimensional Nanostructured Materials and Systems

K. Krishnamoorthy, Sang‐Jae Kim
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Abstract

This chapter describes the use of Raman spectroscopy and mapping analysis for the characterization of low dimensional nanostructures, including 2D sheets (graphene oxide, graphene sheets, MoS2, siloxene), and one-dimensional carbyne chains. The Raman mapping analysis and their application towards understanding the molecular level interactions in these low dimensional materials, nanostructured polymer composites, and nanopaints are also discussed. The stoichiometric composition and structure of these low dimensional materials were correlated with the Raman spectral and mapping analysis. Further, Raman spectroscopy for understanding or probing the mechanism of mechanical to electrical energy harvesting properties of carbyne films via the structural transformation from cumulene to polynne networks of carbyne is demonstrated.
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低维纳米结构材料和系统的拉曼光谱和映射分析
本章描述了使用拉曼光谱和映射分析来表征低维纳米结构,包括二维薄片(氧化石墨烯、石墨烯薄片、二硫化钼、硅氧烷)和一维碳链。本文还讨论了拉曼映射分析及其在低维材料、纳米结构聚合物复合材料和纳米颜料中分子水平相互作用的应用。这些低维材料的化学计量组成和结构与拉曼光谱和映射分析相关。此外,还证明了拉曼光谱可以理解或探索碳炔薄膜通过从积云烯到聚乙烯网络的结构转变而获得机械到电能的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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