Enhanced Thermopower of Saturated Molecules by Noncovalent Anchor-Induced Electron Doping of Single-Layer Graphene Electrode

  • Park, Sohyun
  • Kim, Hwa Rang
  • Kim, Juhee
  • Hong, Byung-Hee
  • Yoon, Hyo Jae
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초록

Enhancing thermopower is a key goal in organic and molecular thermoelectrics. Herein, it is shown that introducing noncovalent contact with a single-layer graphene (SLG) electrode improves the thermopower of saturated molecules as compared to the traditional gold-thiolate covalent contact. Thermoelectric junction measurements with a liquid-metal technique reveal that the value of Seebeck coefficient in large-area junctions based on n-alkylamine self-assembled monolayers (SAMs) on SLG is increased up to fivefold compared to the analogous junction based on n-alkanethiolate SAMs on gold. Experiments with Raman spectroscopy and field-effect transistor analysis indicate that such enhancements benefit from the creation of new in-gap states and electron doping through noncovalent interaction between the amine anchor and the SLG electrode, which leads to a reduced energy offset between the Fermi level and the transport channel. This work demonstrates that control of interfacial bonding nature in molecular junctions improves the Seebeck effect in saturated molecules.

키워드

EGaIngraphenemolecular thermoelectricsSeebeck effectself-assembled monolayersSELF-ASSEMBLED MONOLAYERSTHERMOELECTRIC PROPERTIESTHERMAL CONDUCTANCERAMAN-SPECTROSCOPYLENGTH DEPENDENCELARGE-AREACHEMISTRYMETALPERFORMANCETRANSPORT
제목
Enhanced Thermopower of Saturated Molecules by Noncovalent Anchor-Induced Electron Doping of Single-Layer Graphene Electrode
저자
Park, SohyunKim, Hwa RangKim, JuheeHong, Byung-HeeYoon, Hyo Jae
DOI
10.1002/adma.202103177
발행일
2021-10
유형
Article
저널명
Advanced Materials
33
41