We discuss the relationship between the pi-conjugation pattern, molecular length, and charge transport properties of molecular wires, both from an experimental and a theoretical viewpoint. Specifically, we focus on the role of quantum interference in the conductance properties of cross-conjugated molecules. For this, we compare experiments on two series of dithiolated wires. The first set we synthesized consists of three dithiolated oligo(phenylene ethynylene) (OPE) benchmark compounds with increasing length. The second series synthesized comprises three molecules with different pi-conjugation patterns, but identical lengths, i.e. an anthracene (linear conjugation), an anthraquinone (cross-conjugation), and a dihydroanthracene (broken conju...
As the dimensions of a conductor approach the nanoscale, quantum effects begin to dominate, and it b...
As the dimensions of a conductor approach the nanoscale, quantum effects begin to dominate, and it b...
Quantum interference effects (QI) are of interest in nano-scale devices based on molecular tunneling...
We discuss the relationship between the pi-conjugation pattern, molecular length, and charge transpo...
We discuss the relationship between the pi-conjugation pattern, molecular length, and charge transpo...
We discuss the relationship between the pi-conjugation pattern, molecular length, and charge transpo...
We discuss the relationship between the pi-conjugation pattern, molecular length, and charge transpo...
We discuss the relationship between the π-conjugation pattern, molecular length, and charge transpor...
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...
In order to translate molecular properties in molecular-electronic devices, it is necessary to creat...
Understanding the electronic transport properties of junctions consisting of a scattering region suc...
As the dimensions of a conductor approach the nanoscale, quantum effects begin to dominate, and it b...
As the dimensions of a conductor approach the nanoscale, quantum effects begin to dominate, and it b...
As the dimensions of a conductor approach the nanoscale, quantum effects begin to dominate, and it b...
As the dimensions of a conductor approach the nanoscale, quantum effects begin to dominate, and it b...
Quantum interference effects (QI) are of interest in nano-scale devices based on molecular tunneling...
We discuss the relationship between the pi-conjugation pattern, molecular length, and charge transpo...
We discuss the relationship between the pi-conjugation pattern, molecular length, and charge transpo...
We discuss the relationship between the pi-conjugation pattern, molecular length, and charge transpo...
We discuss the relationship between the pi-conjugation pattern, molecular length, and charge transpo...
We discuss the relationship between the π-conjugation pattern, molecular length, and charge transpor...
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...
In order to translate molecular properties in molecular-electronic devices, it is necessary to creat...
Understanding the electronic transport properties of junctions consisting of a scattering region suc...
As the dimensions of a conductor approach the nanoscale, quantum effects begin to dominate, and it b...
As the dimensions of a conductor approach the nanoscale, quantum effects begin to dominate, and it b...
As the dimensions of a conductor approach the nanoscale, quantum effects begin to dominate, and it b...
As the dimensions of a conductor approach the nanoscale, quantum effects begin to dominate, and it b...
Quantum interference effects (QI) are of interest in nano-scale devices based on molecular tunneling...