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Single Molecule Electronic Devices
DOI:10.1002/adma.201004291.png)
摘要
En 中文
Single molecule electronic devices in which individual molecules are utilized as active electronic components constitute a promising approach for the ultimate miniaturization and integration of electronic devices in nanotechnology through the bottom-up strategy. Thus, the ability to understand, control, and exploit charge transport at the level of single molecules has become a long-standing desire of scientists and engineers from different disciplines for various potential device applications. Indeed, a study on charge transport through single molecules attached to metallic electrodes is a very challenging task, but rapid advances have been made in recent years. This review article focuses on experimental aspects of electronic devices made with single molecules, with a primary focus on the characterization and manipulation of charge transport in this regime.
Keyword:
SURFACE-ENHANCED RAMAN
SELF-ASSEMBLED MONOLAYERS
CHARGE-TRANSPORT
ELECTRICAL CONDUCTANCE
TUNNELING SPECTROSCOPY
JUNCTION CONDUCTANCE
VIBRATIONAL SPECTROSCOPY
ALKANETHIOL MONOLAYERS
METALLIC ELECTRODES
CONTACT RESISTANCE
AI总结
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期刊
IF:
26.8
论文数:
3.4W
被引数:
46.0W
机构
引用论文
The Andean Adaptive Toolkit to Counteract High Altitude Maladaptation: Genome-Wide and Phenotypic Analysis of the Collas
PLoS ONE
IF0

