\begin{document}${\rm{A}}_{\rm{g}}^{\rm{1}}$\end{document}, \begin{document}$ {\rm B_{2g}} $\end{document}, and \begin{document}${\rm{A}}_{\rm{g}}^2$\end{document} in parallel (XX) and vertical (XY) polarization configuration. Furthermore, the angle-dependent source-drain current angle is measured through a BP field-effect transistor. The Raman spectrum results demonstrate that three characteristic peaks are located at 361, 439 and 467 cm–1 in a range of 200–500 cm–1, corresponding to the vibration modes of \begin{document}${\rm{A}}_{\rm{g}}^{\rm{1}}$\end{document}, \begin{document}$ {\rm B_{2g}}, $\end{document} and \begin{document}${\rm{A}}_{\rm{g}}^2$\end{document}, respectively. The fitting experimental data of polarization-dependent Raman spectra also show that the intensity for each of the three characteristic peaks has a 180° periodic variation in a parallel polarization configuration and also in a vertical polarization configuration. The maximum Raman intensity of Ag is along the AC direction, while that of B2g is along the ZZ direction. On the other hand, the electric transport curves illustrate that the largest source leakage current can be obtained near 0° (180°) armchair direction. Such results indicate the anisotropy of black phosphorus. Furthermore, transfer curves with different electrode angles show that the weak bipolarity of black phosphorus at 45° (225°), 90° (270°), and p-type performance at 0° (180°), 135° (315°) can be offered, respectively. This work is conducive to studying the properties and practical applications of devices based on black phosphorus."> - 必威体育下载

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    Ding Yan, Zhong Yue-Hua, Guo Jun-Qing, Lu Yi, Luo Hao-Yu, Shen Yun, Deng Xiao-Hua
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    • Abstract views:12993
    • PDF Downloads:296
    • Cited By:0
    Publishing process
    • Received Date:05 August 2020
    • Accepted Date:02 September 2020
    • Available Online:24 January 2021
    • Published Online:05 February 2021

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