塞贝克系数
欠电位沉积
热电效应
单原子离子
材料科学
热电材料
化学物理
凝聚态物理
量子隧道
联轴节(管道)
单层
电导率
纳米尺度
光电子学
分子轨道
调制(音乐)
电阻率和电导率
石墨烯
电极
纳米电子学
纳米技术
热导率
电荷(物理)
分子动力学
沉积(地质)
原子单位
化学
作者
Jiung Jang,Yuya Tanaka,Danbi Lee,Peng He,Tatsuhiko Ohto,Zee Hwan Kim,Hyo Jae Yoon
出处
期刊:Nano Letters
[American Chemical Society]
日期:2026-01-31
卷期号:26 (5): 1789-1796
被引量:1
标识
DOI:10.1021/acs.nanolett.5c05618
摘要
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 π-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 π-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.
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