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Zhurnal Tekhnicheskoi Fiziki, 2020 Volume 90, Issue 4, Pages 598–602 (Mi jtf5333)

This article is cited in 3 papers

Solids

Specific features of electron transport in a molecular nanodevice containing a nitroamine redox center

D. M. Sergeevab

a Aktobe State University after K. Zhubanov, Aktobe, Kazakhstan
b Begeldinov Military Institute of Air Defence Forces, Aktobe, Kazakhstan

Abstract: Density functional theory in the local-density approximation and the method of nonequilibrium Green functions (DFT + NEGF) are used to study electron transport in a nanodevice consisting of the 2'-amino-4-ethynylphenyl-4'-ethynylphenyl-5'-nitro-1-benzenethiol molecule located between gold electrodes. The I–V and $dI/dV$ characteristics, transmission spectrum, and electron density of the nanodevice are calculated. It is shown that the I–V characteristic of the nanodevice exhibits $N$ shape in a voltage interval of –0.8–0.9 V and a fragment with a negative differential resistance related to the resonance tunneling of quasi-particles. The same changes are observed on the $dI/dV$ characteristic. The results can be used for calculation of promising electronic switches.

Keywords: electron transport, nanocontact, negative differential resistance, current-voltage characteristic.

Received: 03.03.2019
Revised: 03.03.2019
Accepted: 21.10.2019

DOI: 10.21883/JTF.2020.04.49083.79-19


 English version:
Technical Physics, 2020, 65:4, 573–577

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