Charge Transport through Carbon Nanomembranes
Penner P, Zhang X, Marschewski E, Behler F, Angelova P, Beyer A, Christoffers J, Gölzhäuser A (2014)
The Journal of Physical Chemistry C 118(37): 21687-21694.
Zeitschriftenaufsatz
| Veröffentlicht | Englisch
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Autor*in
Penner, PaulUniBi;
Zhang, XinaghuiUniBi;
Marschewski, EmanuelUniBi;
Behler, Florian;
Angelova, PolinaUniBi;
Beyer, AndréUniBi ;
Christoffers, Jens;
Gölzhäuser, ArminUniBi
Abstract / Bemerkung
Molecular junctions incorporating pristine and cross-linked aromatic self-assembled monolayers (SAMs) are fabricated and investigated. A two-terminal setup composed of a eutectic Ga-In (EGaIn) top electrode and the gold substrate on which SAMs are prepared as a bottom electrode was used to characterize the charge transport. SAMs of phenylthiol (PT), biphenylthiol (BPT), p-terphenylthiol (TPT), and p-quaterphenylthiol (QPT) are then irradiated with low-energy electrons and converted into carbon nanomembranes (CNMs). A comparison of charge transport through SAMs and CNMs reveals a decrease of conductance of CNM-based junctions by 1 order of magnitude, as well as a conversion of asymmetric junctions with SAMs into symmetric junctions with CNMs, which could be attributed to the decoupling of CNMs from the Au substrate and the partial loss of aromaticity of CNMs after irradiation. Transition voltage spectroscopy (TVS) was also employed to investigate both types of junctions. We observe the length-dependent behavior of transition voltages in both systems and a reduction of transition voltages of CNM-based junctions in comparison to SAM-based junctions.
Erscheinungsjahr
2014
Zeitschriftentitel
The Journal of Physical Chemistry C
Band
118
Ausgabe
37
Seite(n)
21687-21694
ISSN
1932-7447
eISSN
1932-7455
Page URI
https://pub.uni-bielefeld.de/record/2701736
Zitieren
Penner P, Zhang X, Marschewski E, et al. Charge Transport through Carbon Nanomembranes. The Journal of Physical Chemistry C. 2014;118(37):21687-21694.
Penner, P., Zhang, X., Marschewski, E., Behler, F., Angelova, P., Beyer, A., Christoffers, J., et al. (2014). Charge Transport through Carbon Nanomembranes. The Journal of Physical Chemistry C, 118(37), 21687-21694. doi:10.1021/jp506689n
Penner, Paul, Zhang, Xinaghui, Marschewski, Emanuel, Behler, Florian, Angelova, Polina, Beyer, André, Christoffers, Jens, and Gölzhäuser, Armin. 2014. “Charge Transport through Carbon Nanomembranes”. The Journal of Physical Chemistry C 118 (37): 21687-21694.
Penner, P., Zhang, X., Marschewski, E., Behler, F., Angelova, P., Beyer, A., Christoffers, J., and Gölzhäuser, A. (2014). Charge Transport through Carbon Nanomembranes. The Journal of Physical Chemistry C 118, 21687-21694.
Penner, P., et al., 2014. Charge Transport through Carbon Nanomembranes. The Journal of Physical Chemistry C, 118(37), p 21687-21694.
P. Penner, et al., “Charge Transport through Carbon Nanomembranes”, The Journal of Physical Chemistry C, vol. 118, 2014, pp. 21687-21694.
Penner, P., Zhang, X., Marschewski, E., Behler, F., Angelova, P., Beyer, A., Christoffers, J., Gölzhäuser, A.: Charge Transport through Carbon Nanomembranes. The Journal of Physical Chemistry C. 118, 21687-21694 (2014).
Penner, Paul, Zhang, Xinaghui, Marschewski, Emanuel, Behler, Florian, Angelova, Polina, Beyer, André, Christoffers, Jens, and Gölzhäuser, Armin. “Charge Transport through Carbon Nanomembranes”. The Journal of Physical Chemistry C 118.37 (2014): 21687-21694.
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