Protonation control of spin transport properties in magnetic single-molecule junctions
The protonation-controlled conductance switching of 4,4′-vinylenedipyridine (44VDP) molecular junctions was experimentally reported by Brooke et al . (Nano Lett 18(2): 1317–1322, 2018), where a change induced by protonation in the bonding at the molecule–metal interface was proposed as the key ingre...
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Published in | Journal of materials science Vol. 55; no. 34; pp. 16311 - 16322 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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01.12.2020
Springer Springer Nature B.V |
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Abstract | The protonation-controlled conductance switching of 4,4′-vinylenedipyridine (44VDP) molecular junctions was experimentally reported by Brooke et al
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(Nano Lett 18(2): 1317–1322, 2018), where a change induced by protonation in the bonding at the molecule–metal interface was proposed as the key ingredient. Here, we perform a first-principles study on the spin-dependent transport properties of 44VDP molecular junctions modulated by protonation. The switching mechanism in the experiment is clarified; namely, the weak coupling strength at the molecule–metal interface is triggered by protonation of pyridyl groups in the 44VDP molecule. In particular, the protonation process modifies the organic–ferromagnetic spinterface, which reduces the number of hybrid interface states and causes an inversion of tunneling magnetoresistance from positive to negative values. Furthermore, a protonation-induced excellent spin-filtering effect is realized. This work sheds light on the mechanism of protonation at the organic–ferromagnetic interface and provides a promising way to realize multifunctional devices in organic spintronics. |
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AbstractList | The protonation-controlled conductance switching of 4,4′-vinylenedipyridine (44VDP) molecular junctions was experimentally reported by Brooke et al. (Nano Lett 18(2): 1317–1322, 2018), where a change induced by protonation in the bonding at the molecule–metal interface was proposed as the key ingredient. Here, we perform a first-principles study on the spin-dependent transport properties of 44VDP molecular junctions modulated by protonation. The switching mechanism in the experiment is clarified; namely, the weak coupling strength at the molecule–metal interface is triggered by protonation of pyridyl groups in the 44VDP molecule. In particular, the protonation process modifies the organic–ferromagnetic spinterface, which reduces the number of hybrid interface states and causes an inversion of tunneling magnetoresistance from positive to negative values. Furthermore, a protonation-induced excellent spin-filtering effect is realized. This work sheds light on the mechanism of protonation at the organic–ferromagnetic interface and provides a promising way to realize multifunctional devices in organic spintronics. The protonation-controlled conductance switching of 4,4′-vinylenedipyridine (44VDP) molecular junctions was experimentally reported by Brooke et al . (Nano Lett 18(2): 1317–1322, 2018), where a change induced by protonation in the bonding at the molecule–metal interface was proposed as the key ingredient. Here, we perform a first-principles study on the spin-dependent transport properties of 44VDP molecular junctions modulated by protonation. The switching mechanism in the experiment is clarified; namely, the weak coupling strength at the molecule–metal interface is triggered by protonation of pyridyl groups in the 44VDP molecule. In particular, the protonation process modifies the organic–ferromagnetic spinterface, which reduces the number of hybrid interface states and causes an inversion of tunneling magnetoresistance from positive to negative values. Furthermore, a protonation-induced excellent spin-filtering effect is realized. This work sheds light on the mechanism of protonation at the organic–ferromagnetic interface and provides a promising way to realize multifunctional devices in organic spintronics. |
Audience | Academic |
Author | Qiu, Shuai Ren, Jun-Feng Zhang, Guang-Ping Wang, Chuan-Kui Hu, Gui-Chao Miao, Yuan-Yuan |
Author_xml | – sequence: 1 givenname: Shuai surname: Qiu fullname: Qiu, Shuai organization: Shandong Key Laboratory of Medical Physics and Image Processing and Shandong Provincial Engineering and Technical Center of Light Manipulations, School of Physics and Electronics, Shandong Normal University – sequence: 2 givenname: Yuan-Yuan surname: Miao fullname: Miao, Yuan-Yuan organization: Shandong Key Laboratory of Medical Physics and Image Processing and Shandong Provincial Engineering and Technical Center of Light Manipulations, School of Physics and Electronics, Shandong Normal University – sequence: 3 givenname: Guang-Ping surname: Zhang fullname: Zhang, Guang-Ping organization: Shandong Key Laboratory of Medical Physics and Image Processing and Shandong Provincial Engineering and Technical Center of Light Manipulations, School of Physics and Electronics, Shandong Normal University – sequence: 4 givenname: Jun-Feng surname: Ren fullname: Ren, Jun-Feng organization: Shandong Key Laboratory of Medical Physics and Image Processing and Shandong Provincial Engineering and Technical Center of Light Manipulations, School of Physics and Electronics, Shandong Normal University – sequence: 5 givenname: Chuan-Kui surname: Wang fullname: Wang, Chuan-Kui email: ckwang@sdnu.edu.cn organization: Shandong Key Laboratory of Medical Physics and Image Processing and Shandong Provincial Engineering and Technical Center of Light Manipulations, School of Physics and Electronics, Shandong Normal University – sequence: 6 givenname: Gui-Chao orcidid: 0000-0002-2585-7153 surname: Hu fullname: Hu, Gui-Chao email: hgc@sdnu.edu.cn organization: Shandong Key Laboratory of Medical Physics and Image Processing and Shandong Provincial Engineering and Technical Center of Light Manipulations, School of Physics and Electronics, Shandong Normal University |
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Snippet | The protonation-controlled conductance switching of 4,4′-vinylenedipyridine (44VDP) molecular junctions was experimentally reported by Brooke et al
.
(Nano... The protonation-controlled conductance switching of 4,4'-vinylenedipyridine (44VDP) molecular junctions was experimentally reported by Brooke et al. (Nano Lett... The protonation-controlled conductance switching of 4,4′-vinylenedipyridine (44VDP) molecular junctions was experimentally reported by Brooke et al. (Nano Lett... |
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SubjectTerms | Characterization and Evaluation of Materials Chemical bonds Chemistry and Materials Science Classical Mechanics Coupling (molecular) Crystallography and Scattering Methods Electronic Materials Ferromagnetism First principles Magnetic properties Magnetoresistance Magnetoresistivity Materials Science Polymer Sciences Protonation Resistance Solid Mechanics Spintronics Switching Transport properties |
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Title | Protonation control of spin transport properties in magnetic single-molecule junctions |
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