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Temperature-Dependent Tunneling in Furan Oligomer Single-Molecule Junctions

Authors :
Xiao-Xia Li
Ze-Wen Hong
Yan-Feng Xi
Wen-Xia Liu
Joshua Hihath
Jingxian Yu
Haipeng B. Li
Xiao-Shun Zhou
Lucas Domulevicz
Shan Jin
Source :
ACS Sensors. 6:565-572
Publication Year :
2021
Publisher :
American Chemical Society (ACS), 2021.

Abstract

Two commonly observed charge transport mechanisms in single-molecule junctions are coherent tunneling and incoherent hopping. It has been generally believed that tunneling processes yield temperature-independent conductance behavior and hopping processes exhibit increasing conductance with increasing temperature. However, it has recently been proposed that tunneling can also yield temperature-dependent transport due to the thermal broadening of the Fermi energy of the contacts. In this work, we examine a series of rigid, planar furan oligomers that are free from a rotational internal degree of freedom to examine the temperature dependence of tunneling transport directly over a wide temperature range (78-300 K). Our results demonstrate conductance transition from a temperature-independent regime to a temperature-dependent regime. By examining various hopping and tunneling models and the correlation between the temperature dependence of conductance and molecular orbital energy offset from the Fermi level, we conclude thermally assisted tunneling is the dominant cause for the onset of temperature-dependent conductance in these systems.

Details

ISSN :
23793694
Volume :
6
Database :
OpenAIRE
Journal :
ACS Sensors
Accession number :
edsair.doi.dedup.....98d4d0a2e1a34d753000384fcc0f0a00