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High-throughput simulation of the configuration and ionisation potential of nitrogen-doped graphene

journal contribution
posted on 2024-11-01, 23:36 authored by Manolo Per, Amanda Barnard, Ian Snook
The electron emission properties of doped graphene nanoflakes can determine their suitability for a range of technological applications. Here we investigate the impact of varying the location of a substitutional nitrogen dopant on the first and second ionisation potentials of graphene nanoflakes. We use a high-throughput simulation engine in conjunction with the density functional tight binding method to calculate the properties of both armchair and zig-zag structure nanoflakes containing 1014 carbon atoms. Our results show that dopant location does affect the ionisation potentials, particularly for the armchair structure, and that there is a natural separation into interior and peripheral regions. A simple statistical analysis indicates that the resolution of electronic emissions can be maximised by restricting the nitrogen dopant to the interior region of the armchair nanoflake.

History

Journal

Molecular Simulation

Volume

42

Issue

42557

Start page

458

End page

462

Total pages

5

Publisher

Taylor and Francis

Place published

United Kingdom

Language

English

Copyright

© Crown Copyright in the Commonwealth of Australia 2015 CSIRO

Former Identifier

2006060983

Esploro creation date

2020-06-22

Fedora creation date

2016-04-27

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