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Rectification in Molecular Tunneling Junctions Based on Alkanethiolates with Bipyridine-Metal Complexes

Authors
Park, JunwooBelding, LeeYuan, LiMousavi, Maral P. S.Root, Samuel E.Yoon, Hyo JaeWhitesides, George M.
Issue Date
3-2월-2021
Publisher
AMER CHEMICAL SOC
Citation
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, v.143, no.4, pp.2156 - 2163
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume
143
Number
4
Start Page
2156
End Page
2163
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/49614
DOI
10.1021/jacs.0c12641
ISSN
0002-7863
Abstract
This paper addresses the mechanism for rectification in molecular tunneling junctions based on alkanethiolates terminated by a bipyridine roup complexed with a metal ion, that , is, having the structure Au-TS-S(CH2)(11)BIPY-MCl2 (where M = Co or Cu) with a eutectic indium-gallium alloy top contact (EGaIn, 75.5% Ga 24.5% In). Here, Au-TS-S(CH2)(11)BIPY is a self-assembled monolayer (SAM) of an alkanethiolate with 4-methyl-2,2'-bipyridine (BIPY) head groups, on template-stripped gold (Au-TS). When the SAM is exposed to cobalt(II) chloride, SAMs of the form Au-TS-S(CH2)(11)BIPY-CoCl2 rectify current with a rectification ratio of r(+) = 82.0 at +/- 1.0 V. The rectification, however, disappears (r(+) = 1.0) when the SAM is exposed to copper(II) chloride instead of cobalt. We draw the following conclusions from our experimental results: (i) Au-TS-S(CH2)(11)BIPY-CoCl2 junctions rectify current because only at positive bias (+1.0 V) is there an accessible molecular orbital (the LUMO) on the BIPY-CoCl2 moiety, while at negative bias (-1.0 V), neither the energy level of the HOMO or the LUMO lies between the Fermi levels of the electrodes. (ii) Au-TS-S(CH2)(11)BIPY-CuCl2 junctions do not rectify current because there is an accessible molecular orbital on the BIPY-CuCl2 moiety at both negative and positive bias (the HOMO is accessible at negative bias, and the LUMO is accessible at positive bias). The difference in accessibility of the HOMO levels at -1.0 V causes charge transfer-at negative bias-to take place via Fowler-Nordheim tunneling in BIPY-CoCl2 junctions, and via direct tunneling in BIPY-CuCl2 junctions. This difference in tunneling mechanism at negative bias is the origin of the difference in rectification ratio between BIPY-CoCl2 and BIPY-CuCl2 junctions.
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