Metal/semiconductor (MS) junctions are fundamental in classical microelectronic devices. With device fabrication size approaching atomic scales, electronic performance will become unpredictable as a result of quantum effects becoming relevant in charge transport. The objective of this thesis is to investigate the potential application of thin organic films to modify MS junctions and to modulate their electrical properties. Knowing how the electronic parameters in a device change over time is necessary for commercial viability. I therefore studied the long-term structural and electronic stability of metal-monolayer-silicon junctions, with respect to silicon oxide formation (monitored by x-ray photoelectron spectroscopy (XPS)). Simple straigh...
Thesis (Ph. D.)--University of Rochester. Department of Chemistry, 2014.The research presented in th...
The mechanisms of electron transport in metal-insulator-metal junctions are incompletely understood....
The mechanisms of electron transport in metal-insulator-metal junctions are incompletely understood....
The electrical properties of metal-monolayer-semiconductor junctions were examined at the macroscale...
Metal-organic molecule-semiconductor junctions are controlled not only by the molecular properties, ...
International audienceWe report the synthesis and characterization of molecular rectifying diodes on...
International audienceWe report the synthesis and characterization of molecular rectifying diodes on...
International audienceWe report the synthesis and characterization of molecular rectifying diodes on...
This paper describes an experimentally simple system for measuring rates of electron transport acros...
The way of reduction of metal oxyde semiconductor (MOS) structures is going to reach limitations and...
Recently there has been significant interest in incorporating molecular elements into electronic dev...
Molecular electronics, in which a single molecule or a single layer of molecules that can perform so...
Electronic transport across n-Si-alkyl monolayer/Hg junctions is, at reverse and low forward bias, i...
Electronic transport across n-Si-alkyl monolayer/Hg junctions is, at reverse and low forward bias, i...
Molecular electronics offers a low cost and nanoscale alternative to create devices for electronic s...
Thesis (Ph. D.)--University of Rochester. Department of Chemistry, 2014.The research presented in th...
The mechanisms of electron transport in metal-insulator-metal junctions are incompletely understood....
The mechanisms of electron transport in metal-insulator-metal junctions are incompletely understood....
The electrical properties of metal-monolayer-semiconductor junctions were examined at the macroscale...
Metal-organic molecule-semiconductor junctions are controlled not only by the molecular properties, ...
International audienceWe report the synthesis and characterization of molecular rectifying diodes on...
International audienceWe report the synthesis and characterization of molecular rectifying diodes on...
International audienceWe report the synthesis and characterization of molecular rectifying diodes on...
This paper describes an experimentally simple system for measuring rates of electron transport acros...
The way of reduction of metal oxyde semiconductor (MOS) structures is going to reach limitations and...
Recently there has been significant interest in incorporating molecular elements into electronic dev...
Molecular electronics, in which a single molecule or a single layer of molecules that can perform so...
Electronic transport across n-Si-alkyl monolayer/Hg junctions is, at reverse and low forward bias, i...
Electronic transport across n-Si-alkyl monolayer/Hg junctions is, at reverse and low forward bias, i...
Molecular electronics offers a low cost and nanoscale alternative to create devices for electronic s...
Thesis (Ph. D.)--University of Rochester. Department of Chemistry, 2014.The research presented in th...
The mechanisms of electron transport in metal-insulator-metal junctions are incompletely understood....
The mechanisms of electron transport in metal-insulator-metal junctions are incompletely understood....