نتایج جستجو برای: carbon nanotube field effect transistor

تعداد نتایج: 2573505  

Journal: :Nano letters 2008
Hsin-Ying Chiu Peter Hung Henk W C Postma Marc Bockrath

Ultraminiaturized mass spectrometers are highly sought-after tools, with numerous applications in areas such as environmental protection, exploration, and drug development. We realize atomic scale mass sensing using doubly clamped suspended carbon nanotube nanomechanical resonators, in which their single-electron transistor properties allows self-detection of the nanotube vibration. We use the ...

2006
A Cottet

One of the actual challenges of spintronics is the realization of a spin transistor allowing control of spin transport through an electrostatic gate. In this paper, we report on different experiments which demonstrate gate control of spin transport in a carbon nanotube connected to ferromagnetic leads. We also discuss some theoretical approaches which can be used to analyse spin transport in th...

Journal: :IEEE Sensors Journal 2022

Electrochemical biosensors are widely investigated as they represent attractive analytical tools for detection of a broad range bio-molecules, thanks to their simplicity, high sensitivity and short response time. Especially, employing an electrolyte-gated field-effect transistors (EG-FETs) electrochemical transduction element have gained increasing interest, due the signal amplification intrins...

Journal: :Nanotechnology 2009
Zhixian Zhou Gyula Eres Rongying Jin Alaska Subedi David Mandrus Eugene H Kim

Electrical transport measurements were used to study device behavior that results from the interplay of defects and inadvertent contact variance that develops in as-grown semiconducting single wall carbon nanotube devices with nominally identical Au contacts. The transport measurements reveal that as-grown nanotubes contain defects that limit the performance of field-effect transistors with ohm...

2009
Huibo Chen Xiang Wu Lihong Gong Cai Ye Fengyu Qu Guozhen Shen

We reported the optical and wettability properties of aligned zinc oxide micro/nanotube arrays, which were synthesized on zinc foil via a simple hydrothermal method. As-synthesized ZnO micro/nanotubes have uniform growth directions along the [0001] orientations with diameters in the range of 100-700 nm. These micro/nanotubes showed a strong emission peak at 387 nm and two weak emission peaks at...

Journal: :Nano letters 2008
J Chaste L Lechner P Morfin G Fève T Kontos J-M Berroir D C Glattli H Happy P Hakonen B Plaçais

We report on microwave operation of top-gated single carbon nanotube transistors. From transmission measurements in the 0.1-1.6 GHz range, we deduce device transconductance gm and gate-nanotube capacitance Cg of micro- and nanometric devices. A large and frequency-independent gm approximately 20 microS is observed on short devices, which meets the best dc results. The capacitance per unit gate ...

2005
ALEXANDER SHIK HARRY E. RUDA SLAVA V. ROTKIN S. V. Rotkin

We present a quantum and classical theory of electronic devices with one–dimensional (1D) channels made of a single carbon nanotube or a semiconductor nanowire. An essential component of the device theory is a self–consistent model for electrostatics of 1D systems. It is demonstrated that specific screening properties of 1D wires result in a charge distribution in the channel different from tha...

2005
X.-Z. Bo N. G. Tassi M. S. Strano C. Nuckolls Graciela B. Blanchet

We demonstrate an alternative path for achieving high-transconductance organic transistors by assembling bilayers of pentacene onto random arrays of single-walled carbon nanotubes. We show here that, by varying the connectivity of the underlying nanotube network, the channel length of a thin-film transistor can be reduced by nearly two orders of magnitude—thus, enabling the increase of the devi...

2017
Allen L Ng Chien-Fu Chen Hyejin Kwon Zhiwei Peng Cheng S Lee YuHuang Wang

A critical challenge to translating field effect transistors into biochemical sensor platforms is the requirement of a gate electrode, which imposes restrictions on sensor device architectures and results in added expense, poorer scalability, and electrical noise. Here we show that it is possible to eliminate the need of the physical gate electrode and dielectrics altogether using a synthetic t...

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