This thesis presents an investigation of the electrical properties of about 70 different molecules in molecular tunneling junctions (MTJs). It begins by presenting the field of molecular electronics (ME) -- from the advent of quantum mechanics to the first conception of ideas and experiments in ME. Then it discusses different steps in the fabrication of self-assembled monolayers (SAMs) and their incorporation in large-area MTJ, followed by data acquisition and analysis of current-voltage characteristics. Further, the theoretical methodology, which uses density functional theory in conjunction with non-equilibrium Green's function approach to simulate charge transport probability through MTJs, is reported. After the introduction of several c...
In order to translate molecular properties in molecular-electronic devices, it is necessary to creat...
In order to translate molecular properties in molecular-electronic devices, it is necessary to creat...
Quantum interference effects (QI) are of interest in nano-scale devices based on molecular tunneling...
This thesis presents an investigation of the electrical properties of about 70 different molecules i...
This thesis presents an investigation of the electrical properties of about 70 different molecules i...
In this thesis I present a systematic discussion of large-area tunneling molecular junctions compris...
In this thesis I present a systematic discussion of large-area tunneling molecular junctions compris...
In this thesis I present a systematic discussion of large-area tunneling molecular junctions compris...
In this thesis I present a systematic discussion of large-area tunneling molecular junctions compris...
This review focuses on molecular ensemble junctions in which the individual molecules of a monolayer...
This review focuses on molecular ensemble junctions in which the individual molecules of a monolayer...
This review focuses on molecular ensemble junctions in which the individual molecules of a monolayer...
This review focuses on molecular ensemble junctions in which the individual molecules of a monolayer...
Understanding the electronic transport properties of junctions consisting of a scattering region suc...
In order to translate molecular properties in molecular-electronic devices, it is necessary to creat...
In order to translate molecular properties in molecular-electronic devices, it is necessary to creat...
In order to translate molecular properties in molecular-electronic devices, it is necessary to creat...
Quantum interference effects (QI) are of interest in nano-scale devices based on molecular tunneling...
This thesis presents an investigation of the electrical properties of about 70 different molecules i...
This thesis presents an investigation of the electrical properties of about 70 different molecules i...
In this thesis I present a systematic discussion of large-area tunneling molecular junctions compris...
In this thesis I present a systematic discussion of large-area tunneling molecular junctions compris...
In this thesis I present a systematic discussion of large-area tunneling molecular junctions compris...
In this thesis I present a systematic discussion of large-area tunneling molecular junctions compris...
This review focuses on molecular ensemble junctions in which the individual molecules of a monolayer...
This review focuses on molecular ensemble junctions in which the individual molecules of a monolayer...
This review focuses on molecular ensemble junctions in which the individual molecules of a monolayer...
This review focuses on molecular ensemble junctions in which the individual molecules of a monolayer...
Understanding the electronic transport properties of junctions consisting of a scattering region suc...
In order to translate molecular properties in molecular-electronic devices, it is necessary to creat...
In order to translate molecular properties in molecular-electronic devices, it is necessary to creat...
In order to translate molecular properties in molecular-electronic devices, it is necessary to creat...
Quantum interference effects (QI) are of interest in nano-scale devices based on molecular tunneling...