The effect of the Bi source on optical properties of Bi2Te3 nanostructures |
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Authors: | Yujie Liang Baoqing Zeng Yangyang Song Jing Huang Te Li |
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Affiliation: | a School of Physical Electronics, University of Electronic Science and Technology of China, Chengdu 610054, PR Chinab School of Science, Minzu University of China, Beijing 100081, PR China |
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Abstract: | nanostructures were synthesized by using different Bi sources via a simple solvothermal process, in which and BiCl3 were used as the Bi sources. Optical properties of nanostructures prepared with and BiCl3 as the Bi sources were investigated by micro-Raman spectroscopy. The Raman scattering spectrum of hexagonal nanoplates prepared by using as the Bi source shows that the infrared (IR) active mode A1u, which must be odd parity and is Raman forbidden for bulk crystal due to its inversion symmetry, is greatly activated and shows up clearly in the Raman scattering spectrum. We attribute the appearance of the infrared active A1u mode in the Raman spectrum to crystal symmetry breaking of hexagonal nanoplates. However, the Raman scattering spectrum of nanostructures with irregular shape prepared by using as the Bi source only exhibits the two characteristic Raman modes of crystals. Micro-Raman measurements on nanostructures with different morphologies offer us a potential way to tailor optical properties of nanostructures by controlling the morphologies of the nanostructures, which is very important for practical applications of nanostructures in thermoelectric devices. |
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Keywords: | A. Nanostructures A. Semiconductors B. Chemical synthesis D. Optical properties |
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