Single-molecule junctions beyond electronic transport
The idea of using individual molecules as active electronic components provided the
impetus to develop a variety of experimental platforms to probe their electronic transport …
impetus to develop a variety of experimental platforms to probe their electronic transport …
Single-molecule electronics: from chemical design to functional devices
The use of single molecules in electronics represents the next limit of miniaturisation of
electronic devices, which would enable us to continue the trend of aggressive downscaling …
electronic devices, which would enable us to continue the trend of aggressive downscaling …
Unimolecular electronics
RM Metzger - Chemical reviews, 2015 - ACS Publications
Unimolecular electronics (UME) narrowly defined (sensu stricto), 1 or molecular-scale
electronics, 2 is the study of electrical processes measured or controlled on a molecular …
electronics, 2 is the study of electrical processes measured or controlled on a molecular …
Tuning rectification in single-molecular diodes
We demonstrate a new method of achieving rectification in single molecule devices using
the high-bias properties of gold–carbon bonds. Our design for molecular rectifiers uses a …
the high-bias properties of gold–carbon bonds. Our design for molecular rectifiers uses a …
A molecular diode with a statistically robust rectification ratio of three orders of magnitude
This paper describes a molecular diode with high, statistically robust, rectification ratios R of
1.1× 103. These diodes operate with a new mechanism of charge transport based on …
1.1× 103. These diodes operate with a new mechanism of charge transport based on …
Molecular rectifier composed of DNA with high rectification ratio enabled by intercalation
The predictability, diversity and programmability of DNA make it a leading candidate for the
design of functional electronic devices that use single molecules, yet its electron transport …
design of functional electronic devices that use single molecules, yet its electron transport …
Synthesis, spectral characterization, and theoretical investigation of the photovoltaic properties of (E)-6-(4-(dimethylamino)phenyl)diazenyl)-2-octyl …
This research work focuses on the synthesis, characterization through spectra (FT-IR, UV–
vis, and 1H-NMR) investigations, and the use of density functional theory (DFT) along with …
vis, and 1H-NMR) investigations, and the use of density functional theory (DFT) along with …
Single-molecule nano-optoelectronics: insights from physics
P Li, L Zhou, C Zhao, H Ju, Q Gao, W Si… - Reports on Progress …, 2022 - iopscience.iop.org
Single-molecule optoelectronic devices promise a potential solution for miniaturization and
functionalization of silicon-based microelectronic circuits in the future. For decades of its fast …
functionalization of silicon-based microelectronic circuits in the future. For decades of its fast …
Controlling leakage currents: the role of the binding group and purity of the precursors for self-assembled monolayers in the performance of molecular diodes
This paper describes that the performance of molecular diodes based on self-assembled
monolayers (SAMs) depends on the type of anchoring group and purity of the precursors of …
monolayers (SAMs) depends on the type of anchoring group and purity of the precursors of …
One carbon matters: The origin and reversal of odd–even effects in molecular diodes with self-assembled monolayers of ferrocenyl-alkanethiolates
We investigated the origin of odd–even effects in molecular diodes based on self-assembled
monolayers (SAMs) of ferrocenyl-terminated n-alkanethiolates S (CH2) n Fc with n= 6–15 on …
monolayers (SAMs) of ferrocenyl-terminated n-alkanethiolates S (CH2) n Fc with n= 6–15 on …