Xia Jing, Li Xuan-Ze, Huang Xing, Mao Nannan, Zhu Dan-Dan, Wang Lei, Xu Hua, Meng Xiang-Min
Key Laboratory of Photochemical Conversion and Optoelectronic Materials, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing, 100190, P. R. China.
Center for Nanochemistry, Beijing National Laboratory for Molecular Sciences, College of Chemistry and Molecular Engineering, Peking University, Beijing, 100871, P. R. China.
Nanoscale. 2016 Jan 28;8(4):2063-70. doi: 10.1039/c5nr07675g.
Anisotropic layered semiconductors have attracted significant interest due to the huge possibility of bringing new functionalities to thermoelectric, electronic and optoelectronic devices. Currently, most reports on anisotropy have concentrated on black phosphorus and ReS2, less effort has been contributed to other layered materials. In this work, two-dimensional (2D) orthorhombic SnS flakes on a large scale have been successfully synthesized via a simple physical vapor deposition method. Angle-dependent Raman spectroscopy indicated that the orthorhombic SnS flakes possess a strong anisotropic Raman response. Under a parallel-polarization configuration, the peak intensity of Ag (190.7 cm(-1)) Raman mode reaches the maximum when incident light polarization is parallel to the armchair direction of the 2D SnS flakes, which strongly suggests that the Ag (190.7 cm(-1)) mode can be used to determine the crystallographic orientation of the 2D SnS. In addition, temperature-dependent Raman characterization confirmed that the 2D SnS flakes have a higher sensitivity to temperature than graphene, MoS2 and black phosphorus. These results are useful for the future studies of the optical and thermal properties of 2D orthorhombic SnS.
各向异性层状半导体因其为热电、电子和光电器件带来新功能的巨大可能性而备受关注。目前,大多数关于各向异性的报道都集中在黑磷和二硫化铼上,对其他层状材料的研究较少。在这项工作中,通过一种简单的物理气相沉积方法成功地大规模合成了二维正交晶系的硫化亚锡薄片。角度相关拉曼光谱表明,正交晶系的硫化亚锡薄片具有强烈的各向异性拉曼响应。在平行偏振配置下,当入射光偏振平行于二维硫化亚锡薄片的扶手椅方向时,Ag(190.7 cm(-1))拉曼模式的峰值强度达到最大值,这强烈表明Ag(190.7 cm(-1))模式可用于确定二维硫化亚锡的晶体取向。此外,温度相关拉曼表征证实,二维硫化亚锡薄片对温度的敏感性高于石墨烯、二硫化钼和黑磷。这些结果对于二维正交晶系硫化亚锡光学和热学性质的未来研究具有重要意义。