Rodríguez-Fernández Carlos, Manzano Cristina V, Romero Aldo H, Martín Jaime, Martín-González Marisol, Morais de Lima Mauricio, Cantarero Andrés
Materials Science Institute, University of Valencia, PO Box 22085, 46971 Valencia, Spain.
Nanotechnology. 2016 Feb 19;27(7):075706. doi: 10.1088/0957-4484/27/7/075706. Epub 2016 Jan 19.
We unambiguously show that the signature of Te-rich bismuth telluride is the appearance of three new peaks in the Raman spectra of Bi2Te3, located at 88, 117 and 137 cm(-1). For this purpose, we have grown stoichiometric Bi2Te3 nanowires as well as Te-rich nanowires. The absence of these peaks in stoichiometric nanowires, even in those with the smallest diameter, shows that they are not related to confinement effects or the lack of inversion symmetry, as stated in the literature, but to the existence of Te clusters. These Te clusters have been found in non-stoichiometric samples by high resolution electron microscopy, while they are absent in stoichiometric samples. The Raman spectra of the latter corresponds to the one for bulk Bi2Te3. The intensity of these Raman peaks are clearly correlated to the Te content. In order to ensure statistically meaningful results, we have investigated several regions from every sample.
我们明确表明,富碲碲化铋的特征是在Bi2Te3的拉曼光谱中出现三个新峰,位于88、117和137 cm(-1)处。为此,我们生长了化学计量比的Bi2Te3纳米线以及富碲纳米线。化学计量比纳米线中不存在这些峰,即使是那些直径最小的纳米线,这表明它们与文献中所述的限制效应或缺乏反演对称性无关,而是与碲团簇的存在有关。通过高分辨率电子显微镜在非化学计量比样品中发现了这些碲团簇,而在化学计量比样品中则不存在。后者的拉曼光谱与块状Bi2Te3的光谱相对应。这些拉曼峰的强度与碲含量明显相关。为了确保获得具有统计意义的结果,我们对每个样品的几个区域进行了研究。