The electronic and magnetic properties of single-molecule transistors depend critically on the molecular charge state. Charge transport in single-molecule transistors is characterized by Coulomb-blocked regions in which the charge state of the molecule is fixed and current is suppressed, separated by highconductance, sequential-tunneling regions. It is often difficult to assign the charge state of the molecular species in each Coulomb-blocked region due to variability in the work-function of the electrodes. In this work, we provide a simple and fast method to assign the charge state of the molecular species in the Coulomb-blocked regions based on signatures of electron–phonon coupling together with the Pauliexclusion principle, simply by ob...
The exponential downscaling of (sub-) microelectronic devices known as Mooreâs law will continue in ...
Charge transport phenomena in single-molecule junctions are often dominated by tunneling, with a tra...
It is known that the quantum mechanical ground state of a nanoscale junction has a significant impac...
The electronic and magnetic properties of single-molecule transistors depend critically on the molec...
In the pursuit of down-sizing electronic components, the ultimate limit is the use of single molecul...
Transistors, regardless of their size, rely on electrical gates to control the conductance between s...
In the pursuit of down-sizing electronic components, the ultimate limit is the use of single molecul...
The relationship between the current through an electronic device and the voltage across its termina...
<p>Coulomb blocade in singlelectronics is discussed under the «bottom – up» approach of modern nanoe...
This Thesis is submitted in partial fulfillment of the requirements for the degree of Bachelor of Ap...
Coulomb-blockade transport—whereby the Coulomb interaction between electrons can prohibit their tran...
Coulomb-blockade transport—whereby the Coulomb interaction between electrons can prohibit their tran...
One of the central problems of molecular electronics is to understand electron conduction properties...
The exponential downscaling of (sub-) microelectronic devices known as Mooreâs law will continue in ...
We present a first-principles method for calculating the charging energy of a molecular single-elect...
The exponential downscaling of (sub-) microelectronic devices known as Mooreâs law will continue in ...
Charge transport phenomena in single-molecule junctions are often dominated by tunneling, with a tra...
It is known that the quantum mechanical ground state of a nanoscale junction has a significant impac...
The electronic and magnetic properties of single-molecule transistors depend critically on the molec...
In the pursuit of down-sizing electronic components, the ultimate limit is the use of single molecul...
Transistors, regardless of their size, rely on electrical gates to control the conductance between s...
In the pursuit of down-sizing electronic components, the ultimate limit is the use of single molecul...
The relationship between the current through an electronic device and the voltage across its termina...
<p>Coulomb blocade in singlelectronics is discussed under the «bottom – up» approach of modern nanoe...
This Thesis is submitted in partial fulfillment of the requirements for the degree of Bachelor of Ap...
Coulomb-blockade transport—whereby the Coulomb interaction between electrons can prohibit their tran...
Coulomb-blockade transport—whereby the Coulomb interaction between electrons can prohibit their tran...
One of the central problems of molecular electronics is to understand electron conduction properties...
The exponential downscaling of (sub-) microelectronic devices known as Mooreâs law will continue in ...
We present a first-principles method for calculating the charging energy of a molecular single-elect...
The exponential downscaling of (sub-) microelectronic devices known as Mooreâs law will continue in ...
Charge transport phenomena in single-molecule junctions are often dominated by tunneling, with a tra...
It is known that the quantum mechanical ground state of a nanoscale junction has a significant impac...