Thermopower of Molecular Junction in Harsh Thermal Environments br

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초록

Molecular junctions can be miniaturized devices for heat-to-electricity conversion application, yet these operate only in mild thermalenvironments (less than 323 K) because thiol, the most widely used anchormoiety for chemisorption of active molecules onto surface of electrode,easily undergoes thermal degradation. N-Heterocyclic carbene (NHC) canbe an alternative to traditional thiol anchor for producing ultrastablethermoelectric molecular junctions. Our experiments showed that theNHC-based molecular junctions withstood remarkably high temperaturesup to 573 K, exhibiting consistent Seebeck effect and thermovoltage up toapproximately|1900 mu V|. Our work advances our understanding ofmolecule-electrode contact in the Seebeck effect, providing a roadmapfor constructing robust and efficient organic thermoelectric devices.

키워드

Seebeck effectmolecular junctionself-assembled monolayer (SAM)temperaturethermoelectricsharsh thermal environmentsSELF-ASSEMBLED MONOLAYERSLENGTH-DEPENDENT THERMOPOWERN-HETEROCYCLIC CARBENESTHERMOELECTRIC PROPERTIESDESORPTION SPECTROSCOPYL-CYSTEINEGOLDSTABILITYAU(111)DISULFIDES
제목
Thermopower of Molecular Junction in Harsh Thermal Environments br
저자
Park, SohyunKang, SeohyunYoon, Hyo Jae
DOI
10.1021/acs.nanolett.2c00422
발행일
2022-05-25
유형
Article
저널명
Nano Letters
22
10
페이지
3953 ~ 3960