Issue 48, 2016

Quantum spin Hall phase in Mo2M2C3O2 (M = Ti, Zr, Hf) MXenes

Abstract

The quantum spin Hall (QSH) phase is a peculiar physical phenomenon characterized by topologically protected helical edge states, with potential applications in lower-power electronics and spintronics. Here, using first-principles calculations, we predict the QSH phase in Mo2M2C3O2 (M = Ti, Zr, or Hf), new members with ordered structures in the family of two-dimensional transition metal carbides (MXenes). The QSH phase which is confirmed by the nontrivial Z2 topological invariant and Dirac edge states arises from a d–d band inversion between the M-dxy,x2y2 and the Mo-dz2 orbitals and a spin–orbital coupling (SOC)-induced splitting of the M-dxy,x2y2 orbital at the Γ point. With different M atoms, the QSH gap of Mo2M2C3O2 ranges from 38 to 152 meV. These findings will broaden the scientific and technological impacts of both QSH materials and MXenes.

Graphical abstract: Quantum spin Hall phase in Mo2M2C3O2 (M = Ti, Zr, Hf) MXenes

Article information

Article type
Paper
Submitted
20 Oct 2016
Accepted
15 Nov 2016
First published
15 Nov 2016

J. Mater. Chem. C, 2016,4, 11524-11529

Quantum spin Hall phase in Mo2M2C3O2 (M = Ti, Zr, Hf) MXenes

C. Si, J. You, W. Shi, J. Zhou and Z. Sun, J. Mater. Chem. C, 2016, 4, 11524 DOI: 10.1039/C6TC04560J

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