Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/100367
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Title: Negative differential resistance, perfect spin-filtering effect and tunnel magnetoresistance in vanadium-doped zigzag blue phosphorus nanoribbons
Authors: Zhu, SC 
Peng, SJ
Wu, KM
Yip, CT
Yao, KL
Lam, CH 
Issue Date: 28-Aug-2018
Source: Physical chemistry chemical physics, 28 Aug. 2018, v. 20, no. 32, p. 21105-21112
Abstract: We investigate the electronic and transport properties of vanadium-doped zigzag blue phosphorus nanoribbons by first-principles quantum transport calculations. We study the spin-dependent transport properties and obtain current-voltage curves showing obvious spin polarization and negative differential behaviors. These interesting transport behaviors can be explained by the band structure of the vanadium-doped zigzag blue phosphorus nanoribbons. The tunnel magnetoresistance and spin-filtering effects under different magnetic configurations originate predominately from the symmetry matching between the band structures of the electrodes. According to our results, vanadium-doped zigzag blue phosphorus nanoribbons can be used as a perfect spin filter with a large tunnel magnetoresistance. This also indicates that blue phosphorus nanoribbons are a promising candidate for their future application in spintronics.
Publisher: Royal Society of Chemistry
Journal: Physical chemistry chemical physics 
ISSN: 1463-9076
EISSN: 1463-9084
DOI: 10.1039/c8cp02935k
Rights: This journal is © the Owner Societies 2018
The following publication Zhu, S. -., Peng, S. -., Wu, K. -., Yip, C. -., Yao, K. -., & Lam, C. -. (2018). Negative differential resistance, perfect spin-filtering effect and tunnel magnetoresistance in vanadium-doped zigzag blue phosphorus nanoribbons. Physical Chemistry Chemical Physics, 20(32), 21105-21112 is available at https://doi.org/10.1039/c8cp02935k.
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