Determining the three-dimensional (3D) atomic structure of nanoparticles is critical to identifying the structures controlling their properties. Here, we demonstrate an integrated genetic algorithm (GA) optimization tool that refines the 3D structure of a nanoparticle by matching forward modeling to experimental scanning transmission electron microscopy (STEM) data and simultaneously minimizing the particle energy. We use the tool to create a refined 3D structural model of an experimentally observed ∼6000 atom Au nanoparticle
A genetic algorithm (GA) coupled with density functional theory (DFT) calculations is used to perfor...
A genetic algorithm (GA) coupled with density functional theory (DFT) calculations is used to perfor...
A genetic algorithm (GA) coupled with density functional theory (DFT) calculations is used to perfor...
Determining the three-dimensional (3D) atomic structure of nanoparticles is critical to identifying ...
Determining the three-dimensional (3D) atomic structure of nanoparticles is critical to identifying ...
Determining the three-dimensional (3D) atomic structure of nanoparticles is critical to identifying ...
Whilst technological advancements have allowed imaging at atomic resolution using scanning transmiss...
Whilst technological advancements have allowed imaging at atomic resolution using scanning transmiss...
Whilst technological advancements have allowed imaging at atomic resolution using scanning transmiss...
Whilst technological advancements have allowed imaging at atomic resolution using scanning transmiss...
This work fills the gap for a comprehensive reference conveying the developments in global optimizat...
The 3D atomic arrangements of materials determine the free energy landscape, thus governing the phys...
Nanoparticles exhibit diverse structural and morphological features that are often interconnected, m...
Determining the 3D atomic structure of nanoparticles (NPs) is critical to understand their structure...
Abstract: Nanomaterials are materials that have at least one dimension in the nanometer length scale...
A genetic algorithm (GA) coupled with density functional theory (DFT) calculations is used to perfor...
A genetic algorithm (GA) coupled with density functional theory (DFT) calculations is used to perfor...
A genetic algorithm (GA) coupled with density functional theory (DFT) calculations is used to perfor...
Determining the three-dimensional (3D) atomic structure of nanoparticles is critical to identifying ...
Determining the three-dimensional (3D) atomic structure of nanoparticles is critical to identifying ...
Determining the three-dimensional (3D) atomic structure of nanoparticles is critical to identifying ...
Whilst technological advancements have allowed imaging at atomic resolution using scanning transmiss...
Whilst technological advancements have allowed imaging at atomic resolution using scanning transmiss...
Whilst technological advancements have allowed imaging at atomic resolution using scanning transmiss...
Whilst technological advancements have allowed imaging at atomic resolution using scanning transmiss...
This work fills the gap for a comprehensive reference conveying the developments in global optimizat...
The 3D atomic arrangements of materials determine the free energy landscape, thus governing the phys...
Nanoparticles exhibit diverse structural and morphological features that are often interconnected, m...
Determining the 3D atomic structure of nanoparticles (NPs) is critical to understand their structure...
Abstract: Nanomaterials are materials that have at least one dimension in the nanometer length scale...
A genetic algorithm (GA) coupled with density functional theory (DFT) calculations is used to perfor...
A genetic algorithm (GA) coupled with density functional theory (DFT) calculations is used to perfor...
A genetic algorithm (GA) coupled with density functional theory (DFT) calculations is used to perfor...