The lowest-energy structures of AgCu nanoalloys are searched for by global optimization algorithms for sizes 100 and 200 atoms depending on composition. Even though the AgCu system is very weakly miscible in macroscopic samples, the mixing energy for these nanoalloys turns out to be clearly negative for both sizes, a result which is attributed to the stabilization of non-crystalline Cu@Ag core-shell structures at the nanoscale. The mixing energy is a quantity nowadays unknown in its functional form, so that its prediction may take advantage of machine learning techniques. A support vector regressor is then implemented to successfully predict the mixing energy of AgCu nanoalloys of both sizes. Moreover, with the help of unsupervised learning...
Electronic structures of the free-standing core shell (Cu@Ag) AgnCu34-n (n = 0-34) nanoalloy family ...
We assess Gaussian process (GP) regression as a technique to model interatomic forces in metal nanoc...
A genetic algorithm has been used to perform a global sampling of the potential energy surface in th...
The lowest-energy structures of AgCu nanoalloys are searched for by global optimization algorithms f...
A genetic algorithm approach is applied to the optimization of the potential energy of a wide range ...
The computational prediction of thermodynamically stable metal cluster structures has developed into...
To address the question posed in the title, we have created, and now report details of, an open-acce...
Structural characterization of nanoclusters is one of the major challenges in nanocluster modeling o...
Metallic nanoparticles (clusters) are collections of metallic atoms that are bound together to form ...
Two new efficient methods for finding stable atomic clusters are introduced in this work. A purely a...
Shape, stability and chemical ordering patterns of CuNi nanoalloys are studied as a function of size...
A Bayesian linear regression scheme using a local structural similarity kernel as a descriptor is us...
The development of powerful computer algorithms that are specialized at exploring the energy landsca...
A genetic algorithm (GA) coupled with density functional theory (DFT) calculations is used to perfor...
A new algorithm for the determination of equilibrium structures suitable for metal nanoclusters is p...
Electronic structures of the free-standing core shell (Cu@Ag) AgnCu34-n (n = 0-34) nanoalloy family ...
We assess Gaussian process (GP) regression as a technique to model interatomic forces in metal nanoc...
A genetic algorithm has been used to perform a global sampling of the potential energy surface in th...
The lowest-energy structures of AgCu nanoalloys are searched for by global optimization algorithms f...
A genetic algorithm approach is applied to the optimization of the potential energy of a wide range ...
The computational prediction of thermodynamically stable metal cluster structures has developed into...
To address the question posed in the title, we have created, and now report details of, an open-acce...
Structural characterization of nanoclusters is one of the major challenges in nanocluster modeling o...
Metallic nanoparticles (clusters) are collections of metallic atoms that are bound together to form ...
Two new efficient methods for finding stable atomic clusters are introduced in this work. A purely a...
Shape, stability and chemical ordering patterns of CuNi nanoalloys are studied as a function of size...
A Bayesian linear regression scheme using a local structural similarity kernel as a descriptor is us...
The development of powerful computer algorithms that are specialized at exploring the energy landsca...
A genetic algorithm (GA) coupled with density functional theory (DFT) calculations is used to perfor...
A new algorithm for the determination of equilibrium structures suitable for metal nanoclusters is p...
Electronic structures of the free-standing core shell (Cu@Ag) AgnCu34-n (n = 0-34) nanoalloy family ...
We assess Gaussian process (GP) regression as a technique to model interatomic forces in metal nanoc...
A genetic algorithm has been used to perform a global sampling of the potential energy surface in th...