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Single-molecule junctions sensitive to binary solvent mixtures
DOI:10.1103/PhysRevB.106.075413.png)
摘要
En 中文
We propose a quantum-mechanical model to calculate the nonlinear differential conductance of a single molecular junction immersed in a solvent, either in pure form or as a binary mixture with varying volume fraction. The solvent mixture is captured by a dielectric continuum model for which the resulting spectral density is determined within the Gladstone-Dale approach. The conductance of the molecular junction is calculated by a real-time diagrammatic technique. We find a strong variation of the conductance maximum for varying volume fraction of the solvent mixture. Importantly, the calculated molecular nonlinear conductance shows a very good agreement with experimentally measured data for common molecular junctions in various polar solvent mixtures.
Keyword:
ZERO-BIAS ANOMALIES
DIELECTRIC-RELAXATION
ELECTRON-TRANSFER
CHARGE-TRANSPORT
QUANTUM DOTS
THERMOELECTRICITY
FREQUENCY
MOMENTS
TIMES
期刊
IF:
3.7
论文数:
15.4W
被引数:
41.0W
机构
引用论文
Solvent-molecule interaction induced gating of charge transport through single-molecule junctions溶剂-分子相互作用通过单分子结诱导电荷传输的门控
SCIENCE BULLETIN
IF21.1

