Concurrent Enhancement of Thermopower and Conductivity via Modulation of Diacetylide-Electrode Coupling in Molecular Junctions

  • Jang, Jiung; 
  • Tanaka, Yuya; 
  • Lee, Danbi; 
  • He, Peng; 
  • Ohto, Tatsuhiko; 
  • ... Yoon, Hyo Jae; 
  • 외 1명
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초록

The study of molecular thermoelectricity offers fundamental insights into charge transport via tunneling through organic and organometallic systems, with implications for nanoscale energy conversion technologies. Here, we investigate how molecule-electrode coupling strength influences thermoelectric performance in molecular junctions incorporating self-assembled monolayers of pi-extended Ru(dppe)2-diacetylide complex. Surface modification of gold electrode with monatomic Pt and Pd layers via underpotential deposition enabled precise tuning of the strength of molecule-electrode contact. This tuning enhanced electronic interaction with the remotely positioned Ru core, promoted cumulene-like pi-delocalization along the molecular backbone, reorganized frontier orbitals, and simultaneously enhanced the Seebeck coefficient and electrical conductivity to amplify the power factor by up to 111-fold compared to unmodified junctions. These findings highlight the broader potential of diacetylide complex to translate subtle orbital interactions into significant energy-conversion functions.

키워드

Thermoelectrics; Molecular junction; Organometallic; Seebeck; Electrode; SELF-ASSEMBLED MONOLAYERS; LENGTH DEPENDENCE; SINGLE MOLECULES; CHARGE-TRANSPORT; ANCHORING GROUPS; THERMOELECTRICITY; CONDUCTANCE; RESISTANCE; ALIGNMENT; THIOLS
제목
Concurrent Enhancement of Thermopower and Conductivity via Modulation of Diacetylide-Electrode Coupling in Molecular Junctions
저자
Jang, Jiung; Tanaka, Yuya; Lee, Danbi; He, Peng; Ohto, Tatsuhiko; Kim, Zee Hwan; Yoon, Hyo Jae
DOI
10.1021/acs.nanolett.5c05618
발행일
2026-02-11
유형
Article
저널명
Nano Letters
권
26
호
5
페이지
1789 ~ 1796