We report classical and replica exchange molecular dynamics simulations that establish the mechanisms underpinning the growth kinetics of a binary mix of nanorings that form striped nanotubes via self-assembly. A step-growth coalescence model captures the growth process of the nanotubes, which suggests that high aspect ratio nanostructures can grow by obeying the universal laws of self-similar coarsening, contrary to systems that grow through nucleation and elongation. Notably, striped patterns do not depend on specific growth mechanisms, but are governed by tempering conditions that control the likelihood of depropagation and fragmentation
The agglomeration and self-assembly of gas-phase 1D materials in anthropogenic and natural systems d...
The agglomeration and self-assembly of gas-phase 1D materials in anthropogenic and natural systems d...
Through the use of a population balance equation (PBE), the nucleation and growth of nanocrystals ev...
Self-assembly is a low energy synthesis process, prominent in biological systems, in which smaller b...
We report a fundamentally new growth mechanism for single crystalline nanobelts, namely, the growth ...
Self-assembly processes play a key role in the fabrication of functional nano-structures with widesp...
Self-assembly from a metastable state often occurs by nucleation accompanied by nanoparticle growth ...
Immense insight into fundamental processes necessity for the fabrication of nanostructures is gather...
AbstractSelf-assembled nanostructures, such as quantum dots (QDs), quantum rings (QRs) and nanowires...
Immense insight into fundamental processes necessity for the fabrication of nanostructures is gather...
Doctor of PhilosophyDepartment of PhysicsAmit ChakrabartiWe carry out Brownian Dynamics Simulations ...
We review theoretical explanation of mechanisms of control of uniformity in growth of nanosize parti...
The mechanisms for nanoparticle self-assembly are often inferred from the morphology of the final na...
We report a fundamentally new growth mechanism for single crystalline nanobelts, namely, the growth ...
We have performed molecular simulations to investigate morphologies and the phase diagram of the sel...
The agglomeration and self-assembly of gas-phase 1D materials in anthropogenic and natural systems d...
The agglomeration and self-assembly of gas-phase 1D materials in anthropogenic and natural systems d...
Through the use of a population balance equation (PBE), the nucleation and growth of nanocrystals ev...
Self-assembly is a low energy synthesis process, prominent in biological systems, in which smaller b...
We report a fundamentally new growth mechanism for single crystalline nanobelts, namely, the growth ...
Self-assembly processes play a key role in the fabrication of functional nano-structures with widesp...
Self-assembly from a metastable state often occurs by nucleation accompanied by nanoparticle growth ...
Immense insight into fundamental processes necessity for the fabrication of nanostructures is gather...
AbstractSelf-assembled nanostructures, such as quantum dots (QDs), quantum rings (QRs) and nanowires...
Immense insight into fundamental processes necessity for the fabrication of nanostructures is gather...
Doctor of PhilosophyDepartment of PhysicsAmit ChakrabartiWe carry out Brownian Dynamics Simulations ...
We review theoretical explanation of mechanisms of control of uniformity in growth of nanosize parti...
The mechanisms for nanoparticle self-assembly are often inferred from the morphology of the final na...
We report a fundamentally new growth mechanism for single crystalline nanobelts, namely, the growth ...
We have performed molecular simulations to investigate morphologies and the phase diagram of the sel...
The agglomeration and self-assembly of gas-phase 1D materials in anthropogenic and natural systems d...
The agglomeration and self-assembly of gas-phase 1D materials in anthropogenic and natural systems d...
Through the use of a population balance equation (PBE), the nucleation and growth of nanocrystals ev...