نتایج جستجو برای: graphene nanoribbon fet

تعداد نتایج: 53438  

2017
Rhiannan Forsyth Anitha Devadoss Owen J Guy

Since the discovery of the two-dimensional (2D) carbon material, graphene, just over a decade ago, the development of graphene-based field effect transistors (G-FETs) has become a widely researched area, particularly for use in point-of-care biomedical applications. G-FETs are particularly attractive as next generation bioelectronics due to their mass-scalability and low cost of the technology'...

Journal: :IEEE Electron Device Letters 2012

Journal: :Nano letters 2009
Yu-Ming Lin Keith A Jenkins Alberto Valdes-Garcia Joshua P Small Damon B Farmer Phaedon Avouris

Top-gated graphene transistors operating at high frequencies (gigahertz) have been fabricated and their characteristics analyzed. The measured intrinsic current gain shows an ideal 1/f frequency dependence, indicating a FET-like behavior for graphene transistors. The cutoff frequency f(T) is found to be proportional to the dc transconductance g(m) of the device, consistent with the relation f(T...

2008
Yu-Ming Lin Keith A. Jenkins Alberto Valdes-Garcia Joshua P. Small Damon B. Farmer Phaedon Avouris

Top-gated graphene transistors operating at high frequencies (GHz) have been fabricated and their characteristics analyzed. The measured intrinsic current gain shows an ideal 1/f frequency dependence, indicating an FET-like behavior for graphene transistors. The cutoff frequency fT is found to be proportional to the dc transconductance gm of the device, consistent with the relation fT=gm/(2πCG)...

2012
Omid Habibpour

Graphene is a one-atom-thick sheet of carbon with numerous impressive properties. It is a promising material for future high-speed nanoelectronics due to its intrinsic superior carrier mobility and very high saturation velocity. These exceptional carrier transport properties suggest that graphene field effect transistors (G-FETs) can potentially outperform other FET technologies. This doctoral ...

Journal: :Nature communications 2013
Myung-Ho Bae Zuanyi Li Zlatan Aksamija Pierre N Martin Feng Xiong Zhun-Yong Ong Irena Knezevic Eric Pop

Heat flow in nanomaterials is an important area of study, with both fundamental and technological implications. However, little is known about heat flow in two-dimensional devices or interconnects with dimensions comparable to the phonon mean free path. Here we find that short, quarter-micron graphene samples reach ~35% of the ballistic thermal conductance limit up to room temperature, enabled ...

Journal: :Nanotechnology 2011
Ming-Wei Lin Cheng Ling Yiyang Zhang Hyeun Joong Yoon Mark Ming-Cheng Cheng Luis A Agapito Nicholas Kioussis Noppi Widjaja Zhixian Zhou

We have fabricated suspended few-layer (1-3 layers) graphene nanoribbon field-effect transistors from unzipped multi-wall carbon nanotubes. Electrical transport measurements show that current annealing effectively removes the impurities on the suspended graphene nanoribbons, uncovering the intrinsic ambipolar transfer characteristic of graphene. Further increasing the annealing current creates ...

Journal: :Materials Science Forum 2022

A SiCNWFET device serving as a biosensor was designed and simulated using Silvaco ATLAS simulation software. The performance of the in charges sensing investigated. shows ability to recognize different interface charge values ranging from-1.10E11 to-5.10E12 cm -2 applied on surface silicon carbide nanowire channel simulate target biomolecules that bound biosensor. significant change output curr...

2010
Jingwei Bai Rui Cheng Faxian Xiu Lei Liao Minsheng Wang Alexandros Shailos Kang L. Wang Yu Huang Xiangfeng Duan

Graphene has unique electronic properties, and graphene nanoribbons are of particular interest because they exhibit a conduction bandgap that arises due to size confinement and edge effects. Theoretical studies have suggested that graphene nanoribbons could have interesting magneto-electronic properties, with a very large predicted magnetoresistance. Here, we report the experimental observation...

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