Back to Search Start Over

Enhanced Thermoelectricity in Metal–[60]Fullerene–Graphene Molecular Junctions

Authors :
Simon A. Svatek
Valentina Sacchetti
Rodríguez Pérez, Laura
Illescas Martínez, Beatriz María
Laura Rincón-García
Gabino Rubio-Bollinger
M. Teresa González
Steven Bailey
Colin J. Lambert
Martín León, Nazario
Nicolás Agraït
Simon A. Svatek
Valentina Sacchetti
Rodríguez Pérez, Laura
Illescas Martínez, Beatriz María
Laura Rincón-García
Gabino Rubio-Bollinger
M. Teresa González
Steven Bailey
Colin J. Lambert
Martín León, Nazario
Nicolás Agraït
Publication Year :
2024

Abstract

The thermoelectric properties of molecular junctions consisting of a metal Pt electrode contacting [60]fullerene derivatives covalently bound to a graphene electrode have been studied by using a conducting-probe atomic force microscope (c-AFM). The [60]fullerene derivatives are covalently linked to the graphene via two meta-connected phenyl rings, two para-connected phenyl rings, or a single phenyl ring.We find that the magnitude of the Seebeck coefficient is up to nine times larger than that of Au−C60−Pt molecular junctions.Moreover,the sign of the thermopower can be either positiveor negative depending on the details of the binding geometry and on the local value of the Fermi energy. Our results demonstrate the potential of using graphene electrodes for controlling and enhancing the thermoelectric properties of molecular junctions and confirm the outstanding performance of [60]fullerene derivatives.<br />Depto. de Química Orgánica<br />Fac. de Ciencias Químicas<br />TRUE<br />pub

Details

Database :
OAIster
Notes :
application/pdf, 1530-6984, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1429623064
Document Type :
Electronic Resource