Low Bias Negative Differential Resistance Behavior in Carbon/Boron Nitride Nanotube Heterostructures
Author:
Publisher
IOP Publishing
Subject
General Physics and Astronomy
Link
https://iopscience.iop.org/article/10.1088/0256-307X/30/10/107304/pdf
Reference33 articles.
1. Molecular Wires, Switches, and Memories
2. Large On-Off Ratios and Negative Differential Resistance in a Molecular Electronic Device
3. Ab Initio Electron Transport Study of Carbon and Boron−Nitrogen Nanowires
4. Chiral selective tunneling induced negative differential resistance in zigzag graphene nanoribbon: A theoretical study
5. Negative differential resistance in zigzag-edge graphene nanoribbon junctions
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1. The electronic transport properties of armchair carbon nanotubes with single and multiple horizontal boron-nitride lines: Unusual effects of high bias voltage on I-V characteristics;Diamond and Related Materials;2023-12
2. Computational design of a (5, 0) CNT-InN nanotube heterojunction as a resonant tunneling diode;Indian Journal of Physics;2023-05-09
3. Low-bias negative differential conductance controlled by electrode separation;Chinese Physics B;2016-11-29
4. Electronic Transport of a Molecular Photoswitch with Graphene Nanoribbon Electrodes;Chinese Physics Letters;2014-05
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