Department of Health Technology, Technical University of Denmark, Kgs. Lyngby, Denmark.
Faculty of Radio Physics, Electronics and Computer Systems, Taras Shevchenko National University of Kyiv, Kyiv, Ukraine.
Nat Commun. 2019 Dec 5;10(1):5555. doi: 10.1038/s41467-019-13504-8.
Non-destructive orientation mapping is an important characterization tool in materials science and geoscience for understanding and/or improving material properties based on their grain structure. Confocal Raman microscopy is a powerful non-destructive technique for chemical mapping of organic and inorganic materials. Here we demonstrate orientation mapping by means of Polarized Raman Microscopy (PRM). While the concept that PRM is sensitive to orientation changes is known, to our knowledge, an actual quantitative orientation mapping has never been presented before. Using a concept of ambiguity-free orientation determination analysis, we present fast and quantitative single-acquisition Raman-based orientation mapping by simultaneous registration of multiple Raman scattering spectra obtained at different polarizations. We demonstrate applications of this approach for two- and three-dimensional orientation mapping of a multigrain semiconductor, a pharmaceutical tablet formulation and a polycrystalline sapphire sample. This technique can potentially move traditional X-ray and electron diffraction type experiments into conventional optical laboratories.
非破坏性取向映射是材料科学和地球科学中一个重要的特征描述工具,用于根据晶粒结构来理解和/或改善材料性能。共焦拉曼显微镜是一种强大的非破坏性技术,可用于有机和无机材料的化学映射。在这里,我们通过偏振拉曼显微镜(PRM)来演示取向映射。虽然众所周知 PRM 对取向变化敏感,但据我们所知,以前从未提出过实际的定量取向映射。我们使用无歧义取向确定分析的概念,通过同时注册在不同偏振下获得的多个拉曼散射光谱,提供快速和定量的单次采集基于拉曼的取向映射。我们展示了这种方法在多晶粒半导体、药物片剂制剂和多晶蓝宝石样品的二维和三维取向映射中的应用。该技术有可能将传统的 X 射线和电子衍射类型实验引入传统的光学实验室。