We report on the chemical synthesis of the arrays of silicon oxide nanodots and their self-organization on the surface via physical processes triggered by surface charges. The method based on chemically active oxygen plasma leads to the rearrangement of nanostructures and eventually to the formation of groups of nanodots. This behavior is explained in terms of the effect of electric field on the kinetics of surface processes. The direct measurements of the electric charges on the surface demonstrate that the charge correlates with the density and arrangement of nanodots within the array. Extensive numerical simulations support the proposed mechanism and prove a critical role of the electric charges in the self-organization. This simple and ...
The paper presents an investigation of self-organizational and -assembly processes of nanostructure ...
Surface chemistry and nanoparticle growth relevant for flash memory applications has been investiga...
The full potential of nanotechnology can be unleashed only when one is able not only to synthesize a...
We report on the chemical synthesis of the arrays of silicon oxide nanodots and their self-organizat...
We report on the chemical synthesis of the arrays of silicon oxide nanodots and their self-organizat...
ABSTRACT: We report on the chemical synthesis of the arrays of silicon oxide nanodots and their self...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
This chapter contains sections titled: Synthesis of Self‐Organizing Arrays of Quantum Dots: Objectiv...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
The results of the combined experimental and numerical study suggest that nonequilibrium plasma-driv...
The increasing interest in nanoscience and nanotechnology has prompted intense investigations into a...
Periodic, well-defined, features in the nano-scale (dots, pillars, pores etc) are essential in sever...
The increasing interest in nanoscience and nanotechnology has prompted intense investigations into a...
We describe an ambient ion-based method to create free-standing metal nanosheets, which in turn are ...
The paper presents an investigation of self-organizational and -assembly processes of nanostructure ...
Surface chemistry and nanoparticle growth relevant for flash memory applications has been investiga...
The full potential of nanotechnology can be unleashed only when one is able not only to synthesize a...
We report on the chemical synthesis of the arrays of silicon oxide nanodots and their self-organizat...
We report on the chemical synthesis of the arrays of silicon oxide nanodots and their self-organizat...
ABSTRACT: We report on the chemical synthesis of the arrays of silicon oxide nanodots and their self...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
This chapter contains sections titled: Synthesis of Self‐Organizing Arrays of Quantum Dots: Objectiv...
Driven by the innate tendency of the system to attain a local energy minimum, self-organization enab...
The results of the combined experimental and numerical study suggest that nonequilibrium plasma-driv...
The increasing interest in nanoscience and nanotechnology has prompted intense investigations into a...
Periodic, well-defined, features in the nano-scale (dots, pillars, pores etc) are essential in sever...
The increasing interest in nanoscience and nanotechnology has prompted intense investigations into a...
We describe an ambient ion-based method to create free-standing metal nanosheets, which in turn are ...
The paper presents an investigation of self-organizational and -assembly processes of nanostructure ...
Surface chemistry and nanoparticle growth relevant for flash memory applications has been investiga...
The full potential of nanotechnology can be unleashed only when one is able not only to synthesize a...