We use density functional theory to study intrinsic defects and oxygen related defects in indium selenide. We find that InSe is prone to oxidation, but however not reacting with oxygen as strongly as phosphorene. The dominant intrinsic defects in In-rich material are the In interstitial, a shallow donor, and the Se vacancy, which introduces deep traps. The latter can be passivated by oxygen, which is isoelectronic with Se. The dominant intrinsic defects in Se-rich material have comparatively higher formation energies.
@article{arxiv.1705.05519,
title = {Defects and oxidation resilience in $InSe$},
author = {KaiJian Xiao and Alexandra Sarabando de Carvalho and Antonio Helio Castro Neto},
journal= {arXiv preprint arXiv:1705.05519},
year = {2017}
}