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Half metallicity in a zigzag double-walled nanotube nanodot: An ab initio prediction

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Authors

Du, Ai Jun
Zhu, Zhong Hua
Sun, C H
Chen, Ying
Lu, Gaoqing Max
Smith, Sean C

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Elsevier

Abstract

Ab initio density functional calculations were performed to study finite-length zigzag (7, 0) @ (16, 0) double-walled carbon nanotubes (DWCNTs) with H-termination at the open ends. We find that such a DWCNT nanodot displays a very large magnetic moment at the zigzag edges and the ground state displays symmetric anti-ferromagnetic coupling. When an external electric field is applied along the direction of tube axis, a gap is opened for one spin channel, whereas another spin channel remains metallic, i.e. half metallicity occurs. Our results suggest an important new avenue for the development of CNT-based spintronic materials with enhanced properties.

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Chemical Physics Letters

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Restricted until

2037-12-31
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