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A Density Functional Theory Calculations-Based Approach that Predicts Layered Materials with Emergent Structures

Materials Science 2016-11-23 v1

Abstract

Recent work shows that density functional theory calculations accurately describe materials exhibiting turbostratic disorder between layers of incommensurate constituents. These calculations approximate one of the constituents as a finite island between continuous layers of the other constituent. This island approximation allows equal treatment of all relative angles between the interleaved layers, and it removes the requirement of a unit cell that is commensurate with both layers. The work presented here uses this approximation to search for new layered materials that exhibit turbostratic disorder and magnetic structure. In a first application, the approach finds the recently synthesized SnSe2_2-VSe2_2 system. The approach predicts a stable Fe3_3Ge-VSe2_2 structure and multiple stable structures that interleave Mnx_xSey_y layers with VSe2_2 layers. These Mnx_xSey_y layers exhibit emergent structures and stability.

Keywords

Cite

@article{arxiv.1611.07510,
  title  = {A Density Functional Theory Calculations-Based Approach that Predicts Layered Materials with Emergent Structures},
  author = {Sven P. Rudin},
  journal= {arXiv preprint arXiv:1611.07510},
  year   = {2016}
}
R2 v1 2026-06-22T17:01:26.127Z