Here we report molecular films terminated with diazonium salts moieties at both ends which enables single-molecule contacts between gold and silicon electrodes at open circuit via a radical reaction. We show that the kinetics of film grafting is crystal-facet dependent, being more favorable on ⟨111⟩ than on ⟨100⟩, a finding that adds control over surface chemistry during the device fabrication. The impact of this spontaneous chemistry in single-molecule electronics is demonstrated using STM-break junction approaches by forming metal-single-molecule-semiconductor junctions between silicon and gold source and drain, electrodes. Au-C and Si-C molecule-electrode contacts result in single-molecule wires that are mechanically stable, with an aver...
Metal-molecule-metal junctions have become a widely used test-bed for the study of nanoscale electro...
In the last two decades, significant strides have been made towards utilizing the scanning tunneling...
Currently, there is an array of binding groups for use within molecular electronics for anchoring mo...
Here we report molecular films terminated with diazonium salts moieties at both ends which enables s...
The ultimate goal in molecular electronics is to use individual molecules as the active electronic c...
In 2020, silicon - molecule - silicon junctions were fabricated and shown to be on average one third...
We report the synthesis of covalently linked self-assembled monolayers (SAMs) on silicon surfaces, u...
In most single- or few-molecule devices, the contact electrodes are simple ohmic resistors. Here we ...
We report controlling the formation of single-molecule junctions by means of electrochemically reduc...
AbstractDiazonium grafted oligo(phenylene ethynylene) (OPE) monolayers suitable for single molecule ...
Here we demonstrate for the first time that strained silanes couple directly to gold electrodes in b...
Gold-molecule-gold junctions can be formed by carefully breaking a gold wire in a solution containin...
This thesis studies electronic properties of molecular devices in the limiting cases of strong and w...
In 2020, silicon - molecule - silicon junctions were fabricated and shown to be on average one third...
abstract: Understanding charge transport in single molecules covalently bonded to electrodes is a fu...
Metal-molecule-metal junctions have become a widely used test-bed for the study of nanoscale electro...
In the last two decades, significant strides have been made towards utilizing the scanning tunneling...
Currently, there is an array of binding groups for use within molecular electronics for anchoring mo...
Here we report molecular films terminated with diazonium salts moieties at both ends which enables s...
The ultimate goal in molecular electronics is to use individual molecules as the active electronic c...
In 2020, silicon - molecule - silicon junctions were fabricated and shown to be on average one third...
We report the synthesis of covalently linked self-assembled monolayers (SAMs) on silicon surfaces, u...
In most single- or few-molecule devices, the contact electrodes are simple ohmic resistors. Here we ...
We report controlling the formation of single-molecule junctions by means of electrochemically reduc...
AbstractDiazonium grafted oligo(phenylene ethynylene) (OPE) monolayers suitable for single molecule ...
Here we demonstrate for the first time that strained silanes couple directly to gold electrodes in b...
Gold-molecule-gold junctions can be formed by carefully breaking a gold wire in a solution containin...
This thesis studies electronic properties of molecular devices in the limiting cases of strong and w...
In 2020, silicon - molecule - silicon junctions were fabricated and shown to be on average one third...
abstract: Understanding charge transport in single molecules covalently bonded to electrodes is a fu...
Metal-molecule-metal junctions have become a widely used test-bed for the study of nanoscale electro...
In the last two decades, significant strides have been made towards utilizing the scanning tunneling...
Currently, there is an array of binding groups for use within molecular electronics for anchoring mo...