Rhombic Coulomb diamonds in a single-electron transistor based on an Au nanoparticle chemically anchored at both ends

Rhombic Coulomb diamonds are clearly observed in a chemically anchored Au nanoparticle single-electron transistor. The stability diagrams show stable Coulomb blockade phenomena and agree with the theoretical curve calculated using the orthodox model. The resistances and capacitances of the double-ba...

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Veröffentlicht in:Nanoscale 2016-02, Vol.8 (8), p.472-4726
Hauptverfasser: Azuma, Yasuo, Onuma, Yuto, Sakamoto, Masanori, Teranishi, Toshiharu, Majima, Yutaka
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Sprache:eng
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Zusammenfassung:Rhombic Coulomb diamonds are clearly observed in a chemically anchored Au nanoparticle single-electron transistor. The stability diagrams show stable Coulomb blockade phenomena and agree with the theoretical curve calculated using the orthodox model. The resistances and capacitances of the double-barrier tunneling junctions between the source electrode and the Au core ( R 1 and C 1 , respectively), and those between the Au core and the drain electrode ( R 2 and C 2 , respectively), are evaluated as 4.5 MΩ, 1.4 aF, 4.8 MΩ, and 1.3 aF, respectively. This is determined by fitting the theoretical curve against the experimental Coulomb staircases. Two-methylene-group short octanedithiols (C8S2) in a C8S2/hexanethiol (C6S) mixed self-assembled monolayer is concluded to chemically anchor the core of the Au nanoparticle at both ends between the electroless-Au-plated nanogap electrodes even when the Au nanoparticle is protected by decanethiol (C10S). This is because the R 1 value is identical to that of R 2 and corresponds to the tunneling resistances of the octanedithiol chemically bonded with the Au core and the Au electrodes. The dependence of the Coulomb diamond shapes on the tunneling resistance ratio ( R 1 / R 2 ) is also discussed, especially in the case of the rhombic Coulomb diamonds. Rhombic Coulomb diamonds result from chemical anchoring of the core of the Au nanoparticle at both ends between the electroless-Au-plated nanogap electrodes. Rhombic Coulomb diamonds in a single-electron transistor based on an Au nanoparticle chemically anchored by two-methylene-group short alkanedithiols at both ends.
ISSN:2040-3364
2040-3372
DOI:10.1039/c5nr08965d