English

Effect of Strain on Interactions of {\Sigma}3{111} Silicon Grain Boundary with Oxygen Impurities from First Principles

Materials Science 2022-01-20 v1

Abstract

The interaction of grain boundaries (GBs) with inherent defects and/or impurity elements in multi-crystalline silicon play a decisive role in their electrical behavior. Strain, depending on the types of GBs and defects, plays an important role in these systems. Herein, the correlation between the structural and electronic properties of {\Sigma} 3{111} Si-GB in the presence of interstitial oxygen impurities is studied from the first-principles framework, considering the global and local model of strain. It is observed that the distribution of strain along with the number of impurity atoms modifies the energetics of the material. However, the electronic properties of the considered Si-GBs are not particularly affected by the strain and by the oxygen impurities, unless a very high local distortion induces additional structural defects.

Keywords

Cite

@article{arxiv.2201.07522,
  title  = {Effect of Strain on Interactions of {\Sigma}3{111} Silicon Grain Boundary with Oxygen Impurities from First Principles},
  author = {Rita Maji and Julia Contreras-García and Eleonora Luppi and Elena Degoli},
  journal= {arXiv preprint arXiv:2201.07522},
  year   = {2022}
}

Comments

EMRS-spring meeting 2021: Defect-induced effects in nanomaterials