标题: | 以兆赫辐射时域解析频谱研究金奈米粒子石墨烯复合物的电磁特性 Terahertz electromagnetic properties of gold nanoparticles-graphene composite studied by terahertz time-domain spectroscopy |
作者: | 刘又瑄 Liu, Yow-Shiuan 吴光雄 Wu, Kaung-Hsiung 电子物理系所 |
关键字: | 石墨烯;兆赫辐射时域解析频谱;光电导率;graphene;terahertz time-domain spectroscopy;optical conductivity |
公开日期: | 2015 |
摘要: | 本论文以兆赫辐射时域解析频谱进行金奈米粒子单层石墨烯复合物的兆赫频谱电磁特性研究。石墨烯因其优异的性质成为发展高速光电元件具有相当潜力的热门材料。本研究探讨以化学气相沉积法成长之单层石墨烯在以金奈米粒子改质后于兆赫波段的响应,并进行电磁特性分析。先利用兆赫辐射时域解析频谱得到光学片电导率,接着利用居得─史密斯模型将实验得到之光学片电导率进行拟合,而获得材料直流电导率以及载子散射率,藉由拟合得到之参数计算材料之载子浓度、费米能量以及载子迁移率,讨论经金奈米粒子改质后对单层石墨烯于兆赫波段下的特性差异。 In this study, terahertz time-domain spectroscopy (THz-TDS) has been used to characterize the THz electromagnetic properties of gold nanoparticles (Au-NPs)-graphene composite. Due to the extraordinary properties, graphene possesses considerable potential as a material for ultrahigh-speed THz optoelectronics devices. In this work, we measure the electromagnetic properties of chemical vapor deposition-grown single-layer graphene decorated by Au-NPs. The optical sheet conductivity is obtained from the measurements of THz-TDS. The experimental data is fitted with the Drude-Smith model in order to extract the dc conductivity and scattering rate. The extracted physical parameters are then used to evaluate the carrier concentration, Fermi energy and mobility of each sample. We find that the sheet conductivity in the THz range enhances as concentration of Au-NPs increases, which is consistent with the theoretical prediction. The induced hole carriers in graphene by decorating Au-NPs can be tuned from 1012 cm-2 to 1013 cm-2, the corresponding Fermi energy is shifted from -140 meV to -479 meV. The changes of scattering rate and mobility with varies carrier concentrations also have been explained. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT070252037 http://hdl.handle.net/11536/127218 |
显示于类别: | Thesis |