Impact of Channel Length and Width for Charge Transportation of Graphene Field Effect Transistor

来源 :化学物理学报(英文版) | 被引量 : 0次 | 上传用户:cxg1112
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
The effect of channel length and width on the large and small-signal parameters of the graphene field effect transistor have been explored using an analytical approach.In the case of faster saturation as well as extremely high transit frequency,the graphene field effect transistor shows outstanding performance.From the transfer curve,it is observed that there is a positive shift of Dirac point from the voltage of 0.15 V to 0.35 V because of reducing channel length from 440 nm to 20 nm and this curve depicts that graphene shows ambipolar behavior.Besides,it is found that because of widening channel the drain current increases and the maximum current is found approximately 2.4 mA and 6 mA for channel width 2μm and 5 μm respectively.Furthermore,an approximate symmetrical capacitance-voltage(C-V)characteristic of the graphene field effect transistor is obtained and the capacitance reduces when the channel length decreases but the capacitance can be increased by raising the channel width.In addition,a high transconductance,that demands high-speed radio frequency(RF)applications,of 6.4 mS at channel length 20 nm and 4.45 mS at channel width 5 μm along with a high transit frequency of 3.95 THz have been found that demands high-speed radio frequency applications.
其他文献
未来车载主机发展趋势如何?相信短期内无人能在CD、DVD及无碟化的mpeg系列中做出取舍。不过本期测试的向日葵无碟王DMP-800多媒体影音播放器给我们揭开了车载主机多极化发展
本文采用一种精确的非线性有限元法研究了固端约束对加载到非弹性及有限变形范围内的钢拱承载能力的影响。该方法考虑了有关材料非线性现象的两个重要因素,即屈曲区在横截面
会议
Empirical potential structure refinement is a neutron scattering data analysis algorithm and a software package.It was developed by the disordered materials gro
请下载后查看,本文暂不支持在线获取查看简介。 Please download to view, this article does not support online access to view profile.
对于既买不起商品房,又不符合购买经济适用房和限价房条件的购房者,也许二手经济适用房是一个不错的选择。 For those who can not afford commercial housing, but also do
请下载后查看,本文暂不支持在线获取查看简介。写意孔雀@肖焕 Please download to view, this article does not support online access to view profile. Freehand Peacoc
期刊