石墨烯
辐照
辐射耐受性
质子
辐射
晶体管
材料科学
光电子学
纳米技术
物理
电气工程
核物理学
医学
工程类
放射治疗
电压
内科学
作者
Yifan Zhang,Shengyuan Peng,Yihan Wang,Linxin Guo,Xiuyu Zhang,Huaqing Huang,Shihao Su,Xinwei Wang,Jianming Xue
标识
DOI:10.1021/acs.jpclett.2c02955
摘要
Electronic devices based on two-dimensional materials are promising for application in space instrumentation because of their small size and low power consumption, and irradiation tolerance of these devices is required because of the existence of energetic particles in aerospace conditions. We investigate the performance degradation of graphene field effect transistors (GFETs) with 3 MeV protons by using an in situ irradiation facility. Our results indicate that GFET performance degraded severely at the ion fluence of 8 × 1011 cm-2. Surprisingly, although the performance of the proton-irradiated GFETs is difficult to recover in vacuum, it can nearly completely recover within hours when the GFET is moved into an air environment, indicating that the performance change is due to the charge accumulation in SiO2 under proton irradiation rather than the lattice damage of graphene. Our results have great importance for the application of 2D devices in aerospace and other radiative environments.
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