Literature DB >> 27942666

Two-dimensional hexagonal CrN with promising magnetic and optical properties: A theoretical prediction.

Artem V Kuklin1, Alexander A Kuzubov2, Evgenia A Kovaleva3, Natalya S Mikhaleva3, Felix N Tomilin2, Hyosun Lee4, Pavel V Avramov4.   

Abstract

Half-metallic ferromagnetic materials with planar forms are promising for spintronics applications. A wide range of 2D lattices like graphene, h-BN, transition metal dichalcogenides, etc. are non-magnetic or weakly magnetic. Using first principles calculations, the existence of graphene-like hexagonal chromium nitride (h-CrN) with an almost flat atomically thin structure is predicted. We find that freestanding h-CrN has a 100% spin-polarized half-metallic nature with possible ferromagnetic ordering and a high rate of optical transparency. As a possible method for stabilization and synthesis, deposition of h-CrN on 2D MoSe2 or on MoS2 is proposed. The formation of composites retains the half-metallic properties and leads to the reduction of spin-down band gaps to 1.43 and 1.71 eV for energetically favorable h-CrN/MoSe2 and h-CrN/MoS2 configurations, respectively. Calculation of the dielectric functions of h-CrN, h-CrN/MoSe2 and h-CrN/MoS2 exhibit the high transparency of all three low-dimensional nanomaterials. The honeycomb CrN may be considered as a promising fundamental 2D material for a variety of potential applications of critical importance.

Entities:  

Year:  2017        PMID: 27942666     DOI: 10.1039/c6nr07790k

Source DB:  PubMed          Journal:  Nanoscale        ISSN: 2040-3364            Impact factor:   7.790


  1 in total

1.  Strain Effects on the Two-Dimensional Cr2N MXene: An Ab Initio Study.

Authors:  Sandra Julieta Gutiérrez-Ojeda; Rodrigo Ponce-Pérez; Daniel Maldonado-Lopez; Do Minh Hoat; Jonathan Guerrero-Sánchez; Ma Guadalupe Moreno-Armenta
Journal:  ACS Omega       Date:  2022-09-13
  1 in total

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