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Measuring Conductance of Phenylenediamine as a Molecular Sensor

Authors
Kim, TaekyeongKim, Tae Hyun
Issue Date
2015
Publisher
Hindawi Publishing Corporation
Keywords
Molecular sensor; STM; conductance
Citation
Journal of Sensors, v.2015
Journal Title
Journal of Sensors
Volume
2015
URI
https://scholarworks.bwise.kr/sch/handle/2021.sw.sch/11529
DOI
10.1155/2015/353095
ISSN
1687-725X
1687-7268
Abstract
We report experimental measurements of molecular conductance as a single molecular sensor by using scanning tunneling microscope-based break-junction (STM-BJ) technique. The gap was created after Au atomic point contact was ruptured, and the target molecule was inserted and bonded to the top and bottom electrodes. We successfully measured the conductance for a series of amine-terminated oligophenyl molecules by forming the molecular junctions with Au electrodes. The measured conductance decays exponentially with molecular backbone length, enabling us to detect the type of molecules as a molecular sensor. Furthermore, we demonstrated reversible binary switching in a molecular junction by mechanical control of the gap between the electrodes. Since our method allows us to measure the conductance of a single molecule in ambient conditions, it should open up various practical molecular sensing applications.
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