Calculations on Formation and Binding Energies with Bulk Vacancies and (001) Surface of α-Fe
Yan‐Ni Wen
Abstract
Yan‐Ni Wen
Abstract
Both formation and binding energies,of mono-vacancy and di-vacancy of the bulk and first five layers on(001) surface in BCC metal αFe,are calculated by using the modified analytical embedded-atom method in order to understand the effect of the vacancies to the physical,chemical and mechanical properties.Mono-and di-vacancy can form easily,based on calculation,in the first layer of surface atom associated with minimum formation energy.a di-vacancy in the first layer is the most stable,corresponds to maximum binding energy,nearest-neighbor d between first and second layer is next.As that the migration and collection of vacancies in surface layer of α-Fe is clear.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Both formation and binding energies,of mono-vacancy and di-vacancy of the bulk and first five layers on(001) surface in BCC metal αFe,are calculated by using the modified analytical embedded-atom method in order to understand the effect of the vacancies to the physical,chemical and mechanical properties.Mono-and di-vacancy can form easily,based on calculation,in the first layer of surface atom associated with minimum formation energy.a di-vacancy in the first layer is the most stable,corresponds to maximum binding energy,nearest-neighbor d between first and second layer is next.As that the migration and collection of vacancies in surface layer of α-Fe is clear.
Key concepts: Vacancy defect, Atom (system on chip), Binding energy, Materials science, Layer (electronics), Surface layer, Surface (topology), Atomic physics