Zhang Dingdong, Du Jinhong, Hong Yi-Lun, Zhang Weimin, Wang Xiao, Jin Hui, Burn Paul L, Yu Junsheng, Chen Maolin, Sun Dong-Ming, Li Meng, Liu Lianqing, Ma Lai-Peng, Cheng Hui-Ming, Ren Wencai
Shenyang National Laboratory for Materials Science , Institute of Metal Research, Chinese Academy of Sciences , 72 Wenhua Road , Shenyang 110016 , P.R. China.
School of Materials Science and Engineering , University of Science and Technology of China , 72 Wenhua Road , Shenyang 110016 , P.R. China.
ACS Nano. 2019 May 28;13(5):5513-5522. doi: 10.1021/acsnano.9b00330. Epub 2019 Apr 30.
Clean transfer of two-dimensional (2D) materials grown by chemical vapor deposition is critical for their application in electronics and optoelectronics. Although rosin can be used as a support layer for the clean transfer of graphene grown on Cu, it has not been usable for the transfer of 2D materials grown on noble metals or for large-area transfer. Here, we report a poly(methyl methacrylate) (PMMA)/rosin double support layer that enables facile ultraclean transfer of large-area 2D materials grown on different metals. The bottom rosin layer ensures clean transfer, whereas the top PMMA layer not only screens the rosin from the transfer conditions but also improves the strength of the transfer layer to make the transfer easier and more robust. We demonstrate the transfer of monolayer WSe and WS single crystals grown on Au as well as large-area graphene films grown on Cu. As a result of the clean surface, the transferred WSe retains the intrinsic optical properties of the as-grown sample. Moreover, it does not require annealing to form good ohmic contacts with metal electrodes, enabling high-performance field effect transistors with mobility and ON/OFF ratio ∼10 times higher than those made by PMMA-transferred WSe. The ultraclean graphene film is found to be a good anode for flexible organic photovoltaic cells with a high power conversion efficiency of ∼6.4% achieved.
通过化学气相沉积法生长的二维(2D)材料的清洁转移对于其在电子学和光电子学中的应用至关重要。尽管松香可作为在铜上生长的石墨烯清洁转移的支撑层,但它尚未用于在贵金属上生长的二维材料的转移或大面积转移。在此,我们报道了一种聚甲基丙烯酸甲酯(PMMA)/松香双支撑层,它能够实现从不同金属上生长的大面积二维材料的简便超清洁转移。底部的松香层确保清洁转移,而顶部的PMMA层不仅能在转移过程中保护松香,还能提高转移层的强度,使转移更容易且更稳固。我们展示了在金上生长的单层WSe和WS单晶以及在铜上生长的大面积石墨烯薄膜的转移。由于表面清洁,转移后的WSe保留了生长态样品的固有光学性质。此外,它无需退火即可与金属电极形成良好的欧姆接触,从而实现高性能场效应晶体管,其迁移率和开/关比比通过PMMA转移的WSe制成的晶体管高约10倍。发现超清洁的石墨烯薄膜是柔性有机光伏电池的良好阳极,实现了约6.4%的高功率转换效率。