نتایج جستجو برای: graphene nanoribbon fet

تعداد نتایج: 53438  

2012
Hafsa Khurshid Wanfeng Li Manh-Huong Phan Pritish Mukherjee George C. Hadjipanayis Hariharan Srikanth

Related Articles Contact resistance as a probe of near-interface ferromagnetism in GaMnAs/Cu bilayers Appl. Phys. Lett. 100, 212403 (2012) Magnetic properties of ZnO nanoclusters J. Appl. Phys. 111, 084321 (2012) Mechanically tunable magnetism on graphene nanoribbon adsorbed SiO2 surface J. Appl. Phys. 111, 074317 (2012) Surface wave resonances supported on a square array of square metallic pil...

Journal: :Microelectronics Journal 2008
A. León Z. Barticevic M. Pacheco

We investigate the effects of nitrogen impurities on the electronic properties of quantum dots realized in Z-shaped graphene nanoribbon junction. The system is studied using first principle calculations, based on the local spin density approximation (LSDA). Our results indicate that the presence of the impurities drastically changes the configuration of the localized states in the quantum dot. ...

By applying tensile local uniaxial strain on 5 nm of drain region and compressive local uniaxial strain on 2.5 nm of source and 2.5 nm of channel regions of graphene nanoribbon tunneling field-effect transistor (GNR-TFET), we propose a new bandgap-engineered (BE) GNR-TFET. Simulation of the suggested device is done based on non-equilibrium Green’s function (NEGF) method by a mode-space approach...

Journal: :Micromachines 2015
Shuangxi Xie Niandong Jiao Steve Tung Lianqing Liu

Graphene and single-walled carbon nanotube (SWCNT) have been widely studied because of their extraordinary electrical, thermal, mechanical, and optical properties. This paper describes a novel and flexible method to fabricate all-carbon field-effect transistors (FETs). The fabrication process begins with assembling graphene grown by chemical vapor deposition (CVD) on a silicon chip with SiO2 as...

2018
Ye Chang Zhipeng Hui Xiayu Wang Hemi Qu Wei Pang Xuexin Duan

In this paper, we develop a novel dual-mode gas sensor system which comprises a silicon nanoribbon field effect transistor (Si-NR FET) and a film bulk acoustic resonator (FBAR). We investigate their sensing characteristics using polar and nonpolar organic compounds, and demonstrate that polarity has a significant effect on the response of the Si-NR FET sensor, and only a minor effect on the FBA...

2012
Alexander V. Savin Yuri S. Kivshar

We study the motion of C₆₀ fullerene molecules and short-length carbon nanotubes on graphene nanoribbons. We reveal that the character of the motion of C₆₀ depends on temperature: for T < 150 K the main type of motion is sliding along the surface, but for higher temperatures the sliding is replaced by rocking and rolling. Modeling of the buckyball with an included metal ion demonstrates that th...

Journal: :Physical review letters 2012
Jia-Tao Sun Han Huang Swee Liang Wong H-J Gao Yuan Ping Feng Andrew Thye Shen Wee

Scanning tunnelling microscopy and spectroscopy experiments complemented by first-principles calculations have been conducted to study the electronic structure of 4 monolayer Bi(110) nanoribbons on epitaxial graphene on silicon carbide [4H-SiC(0001)]. In contrast with the semimetal property of elemental bismuth, an energy gap of 0.4 eV is measured at the centre of the Bi(110) nanoribbons. Edge ...

2018
Stephanie J Heerema Leonardo Vicarelli Sergii Pud Raymond N Schouten Henny W Zandbergen Cees Dekker

Many theoretical studies predict that DNA sequencing should be feasible by monitoring the transverse current through a graphene nanoribbon while a DNA molecule translocates through a nanopore in that ribbon. Such a readout would benefit from the special transport properties of graphene, provide ultimate spatial resolution because of the single-atom layer thickness of graphene, and facilitate hi...

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