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Illinois ABE 446 Lecture 2: Synthetic Nanostructures
11 Feb 2010 | | Contributor(s):: Kaustubh Bhalerao
Where is fermi level located in bandgap of Carbon Nanotube ?
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It is well known that a Schottky barrier is formed at Metal-Nanotube junction. To draw band diagram of Metal-CNT system, Band diagram of Carbon Nanotube in vaccume should be known. When both...
Boron Nitride Nanotube Growth Mode
27 Jan 2012 | | Contributor(s):: Brian Demczyk
This writeup details the growth details of arc-synthesized boron nitride nanotubes, incorporating the results of atomic resolution transmission electron microscopy, image simulation and image exit wave reconstruction techniques.This research was supported in part by the Director of the Office of...
Boron Nitride Nanotube Structure
07 Oct 2011 | | Contributor(s):: Brian Demczyk, J. Cumings, A. Zettl
We have used high-resolution transmission electron microscopy to resolve the basal plane structure and chirality relationships in boron nitride nanotubes.
Carbon Nanotube Electronics: Modeling, Physics, and Applications
28 Jun 2013 | | Contributor(s):: Jing Guo
In recent years, significant progress in understanding the physics of carbon nanotube electronic devices and in identifying potential applications has occurred. In a nanotube, low bias transport can be nearly ballistic across distances of several hundred nanometers. Deposition of high-k gate...
Carbon nanotubes and graphene nanoribbons
This page provides links to various nanoHUB resources related to carbon nanotubes (CNT) and graphene nanoribbons (GNR).
The CNTbands tool simulates CNT and GNR.
This tutorial introduces...
Chanaka Suranjith Rupasinghe
14 Dec 2006 | | Contributor(s):: Gyungseon Seol, Youngki Yoon, James K Fodor, Jing Guo, Akira Matsudaira, Diego Kienle, Gengchiau Liang, Gerhard Klimeck, Mark Lundstrom, Ahmed Ibrahim Saeed
This tool simulates E-k and DOS of CNTs and graphene nanoribbons.
CNTbands: First-Time User Guide
14 Jun 2009 | | Contributor(s):: Xufeng Wang, Youngki Yoon
This is a simple guide designed for first-time users of CNTbands. It gives a brief introduction of the tool and a series of tutorials to help users learn the basics of CNTbands.NCN@Purdue
ECET 499N Lecture 8: Electron Microscopy
02 Mar 2010 | | Contributor(s):: Eric Stach
Guest lecture: Eric A. Stach
Electron Phonon Interaction in Carbon Nanotube Devices
27 Jun 2013 | | Contributor(s):: Sayed Hasan
With the end of silicon technology scaling in sight, there has been a lot of interest in alternate novel channel materials and device geometry. Carbon nanotubes, the ultimate one-dimensional (1D) wire, is one such possibility. Since the report of the first CNT transistors, lots has been learned...
Electron Transport in Schottky Barrier CNTFETs
24 Oct 2017 | | Contributor(s):: Igor Bejenari
A given review describes models based on Wentzel-Kramers-Brillouin approximation, which are used to obtain I-V characteristics for ballistic CNTFETs with Schottky-Barrier (SB) contacts. The SB is supposed to be an exponentially or linearly decaying function along the channel. The ...
Illinois Nano EP Seminar Series Spring 2010 - Lecture 5: Alignment of Carbon Nanotubes: a Route to Nanoelectronics
29 Jan 2011 | | Contributor(s):: Jianliang Xiao
Single walled carbon nanotubes (SWNTs) possess extraordinary electrical properties, with many possible applications in electronics. Dense, horizontally aligned arrays of linearly configured SWNTs represent perhaps the most attractive and scalable way to implement this class of nanomaterial in...
jesus alexis Gonzalez
miguel angel Gregorio
Nano Carbon: From ballistic transistors to atomic drumheads
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14 May 2008 | | Contributor(s):: Paul L. McEuen
Carbon takes many forms, from precious diamonds to lowly graphite. Surprisingly, it is the latter that is the most prized by nano physicists. Graphene, a single layer of graphite, can serve as an impenetrable membrane a single atom thick. Rolled up into a nanometer-diameter cylinder--a carbon...