Simultaneous Determination of Conductance and Thermopower of Single Molecule Junctions
Overview
Affiliations
We report the first concurrent determination of conductance (G) and thermopower (S) of single-molecule junctions via direct measurement of electrical and thermoelectric currents using a scanning tunneling microscope-based break-junction technique. We explore several amine-Au and pyridine-Au linked molecules that are predicted to conduct through either the highest occupied molecular orbital (HOMO) or the lowest unoccupied molecular orbital (LUMO), respectively. We find that the Seebeck coefficient is negative for pyridine-Au linked LUMO-conducting junctions and positive for amine-Au linked HOMO-conducting junctions. Within the accessible temperature gradients (<30 K), we do not observe a strong dependence of the junction Seebeck coefficient on temperature. From histograms of thousands of junctions, we use the most probable Seebeck coefficient to determine a power factor, GS(2), for each junction studied, and find that GS(2) increases with G. Finally, we find that conductance and Seebeck coefficient values are in good quantitative agreement with our self-energy corrected density functional theory calculations.
Identifying Quantum Interference Effects from Joint Conductance-Thermopower Statistics.
Bergfield J Nano Lett. 2024; 24(47):15110-15117.
PMID: 39536132 PMC: 11613687. DOI: 10.1021/acs.nanolett.4c04439.
Orientational Effects and Molecular-Scale Thermoelectricity Control.
Alotaibi T, Alshahrani M, Alshammari M, Alotaibi M, Mohaymen Taha T, Al-Jobory A ACS Omega. 2024; 9(27):29537-29543.
PMID: 39005829 PMC: 11238236. DOI: 10.1021/acsomega.4c02141.
Microscopic theory, analysis, and interpretation of conductance histograms in molecular junctions.
Mejia L, Cossio P, Franco I Nat Commun. 2023; 14(1):7646.
PMID: 37996422 PMC: 10667247. DOI: 10.1038/s41467-023-43169-3.
Xu H, Fan H, Luan Y, Yan S, Martin L, Miao R J Am Chem Soc. 2023; 145(43):23541-23555.
PMID: 37874166 PMC: 10623571. DOI: 10.1021/jacs.3c07258.
Oz A, Nitzan A, Hod O, Peralta J J Chem Theory Comput. 2023; 19(21):7496-7504.
PMID: 37852250 PMC: 10653109. DOI: 10.1021/acs.jctc.3c00311.