Spin Caloritronic Transport of 1,3,5-Triphenylverdazyl Radical
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Abstract
We investigate theoretically the spin caloritronic transport properties of a stable 1,3,5-triphenylverdazyl (TPV) radical sandwiched between Au electrodes through different connection fashions. Obvious spin Seebeck effect can be observed in the para-connection fashion. Furthermore, a pure spin current and a completely spin-polarized current can be realized by tuning the gate voltage. Furthermore, a 100% spin polarization without the need of gate voltage can be obtained in the meta-connection fashion. These results demonstrate that TPV radical is a promising material for spin caloritronic and spintronic applications.
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Qiu-Hua Wu, Peng Zhao, De-Sheng Liu. Spin Caloritronic Transport of 1,3,5-Triphenylverdazyl Radical[J]. Chin. Phys. Lett., 2016, 33(3): 037303. DOI: 10.1088/0256-307X/33/3/037303
Qiu-Hua Wu, Peng Zhao, De-Sheng Liu. Spin Caloritronic Transport of 1,3,5-Triphenylverdazyl Radical[J]. Chin. Phys. Lett., 2016, 33(3): 037303. DOI: 10.1088/0256-307X/33/3/037303
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Qiu-Hua Wu, Peng Zhao, De-Sheng Liu. Spin Caloritronic Transport of 1,3,5-Triphenylverdazyl Radical[J]. Chin. Phys. Lett., 2016, 33(3): 037303. DOI: 10.1088/0256-307X/33/3/037303
Qiu-Hua Wu, Peng Zhao, De-Sheng Liu. Spin Caloritronic Transport of 1,3,5-Triphenylverdazyl Radical[J]. Chin. Phys. Lett., 2016, 33(3): 037303. DOI: 10.1088/0256-307X/33/3/037303
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