We present theoretical methods and computational strategies of the effects of nanoparticles on linear optical properties of molecules. We present quantum mechanical-molecular mechanics response methods for calculating electromagnetic properties of molecules interacting with nanoparticles and we report strategies for calculating electronic and redox states of molecules sandwiched between gold nanoparticles
In this thesis I concentrate on the description of electron transport properties of microscopic obje...
We analyze how functionality could be obtained within single-molecule devices by using a combination...
<p>Coulomb blocade in singlelectronics is discussed under the «bottom – up» approach of modern nanoe...
This dissertation presents a generalized quantum chemical approach for electron transport in molecul...
A generalized quantum chemical approach for electron transport in molecular devices is developed. It...
In this thesis, a combination of density functional theory (DFT) based calculations and nonequilibri...
Rapid progress of nanotechnology requires developing novel theoretical methods to explain complicate...
The paper proposes a study of molecular interactions using the planetary model of the atomic structu...
The original approach to the creation of high-temperature single-electron tunneling systems has been...
This tutorial outlines the basic theoretical concepts and tools which underpin the fundamentals of p...
Modern electronics technology has reached a very sophisticated stage. Require-ments for smaller and ...
In the pursuit of down-sizing electronic components, the ultimate limit is the use of single molecul...
We describe single-electron tunneling through molecular structures under the influence of nanomechan...
Molecular electronics is an active research area for the future information technology. The fabricat...
The ability to control the transport of electrons across nanometer-sized junctions made from molecul...
In this thesis I concentrate on the description of electron transport properties of microscopic obje...
We analyze how functionality could be obtained within single-molecule devices by using a combination...
<p>Coulomb blocade in singlelectronics is discussed under the «bottom – up» approach of modern nanoe...
This dissertation presents a generalized quantum chemical approach for electron transport in molecul...
A generalized quantum chemical approach for electron transport in molecular devices is developed. It...
In this thesis, a combination of density functional theory (DFT) based calculations and nonequilibri...
Rapid progress of nanotechnology requires developing novel theoretical methods to explain complicate...
The paper proposes a study of molecular interactions using the planetary model of the atomic structu...
The original approach to the creation of high-temperature single-electron tunneling systems has been...
This tutorial outlines the basic theoretical concepts and tools which underpin the fundamentals of p...
Modern electronics technology has reached a very sophisticated stage. Require-ments for smaller and ...
In the pursuit of down-sizing electronic components, the ultimate limit is the use of single molecul...
We describe single-electron tunneling through molecular structures under the influence of nanomechan...
Molecular electronics is an active research area for the future information technology. The fabricat...
The ability to control the transport of electrons across nanometer-sized junctions made from molecul...
In this thesis I concentrate on the description of electron transport properties of microscopic obje...
We analyze how functionality could be obtained within single-molecule devices by using a combination...
<p>Coulomb blocade in singlelectronics is discussed under the «bottom – up» approach of modern nanoe...