Emerging flat bands and spin polarization in nanodiamond island superlattices with varying carrier effective masses

  • Oyeniyi, G. T.; 
  • Melchakova, Iu. A.; 
  • Engelgardt, D. R.; 
  • Tchaikovskaya, O. N.; 
  • Avramov, P. V.
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초록

For the first time, a set of regular 2D sp2/sp3 hybrid superlattices of nanodiamond islands confined between two graphene sheets (NDI-c2G) were proposed and explored using Density Functional Theory Periodic Boundary Conditions simulations. The fusion involves coronene and ovalene molecules with top and bottom graphene lattices, which can be treated with electron beam irradiation and atomic hydrogen at the nanodiamond site in three different configurations: (11 1)CD, (000 1)HD, and (2110)HD. This creates distorted sp3 nanodiamond sublattices within the sp2 graphene fragments, serving as regions with confined electrons, making the charge carriers' effective masses heavier. The presence of spin-splitting valence spin-up and conduction spin-down flat bands near the Fermi level in cubic ((11 1)CD-I and (111)CD-II) and hexagonal ((2110)HD)-II) superlattices resulted in magnetic moments of 3.99 mu B, 3.99 mu B, and 1.99 mu B per unit cell, respectively. Various configurations significantly impacted their electronic properties, resulting in spin-polarized and non-spin-polarized systems with flat bands near the Fermi level, exhibiting a semiconducting nature. The averaged spin moments per carbon atom were 0.16 mu B, 0.14 mu B, and 0.08 mu B, localized at the sp2/sp3 interfaces of the nanodiamond sites. Analysis of the electronic states, band structure, charge carrier effective masses, and spin density distribution suggests NDIc2G shares similar electronic nature to strongly correlated twisted bilayer graphenes at small magic angles.

키워드

Graphene; Nanodiamond; Spin polarization; Hybrid nanoallotrope; Cubic and hexagonal lattices; Effective masses; BILAYER GRAPHENE; MOTT INSULATOR; STRAIN; STATES; SUPERCONDUCTIVITY; ELECTRON; DEFECTS; CARBON; FILMS; HALL
제목
Emerging flat bands and spin polarization in nanodiamond island superlattices with varying carrier effective masses
저자
Oyeniyi, G. T.; Melchakova, Iu. A.; Engelgardt, D. R.; Tchaikovskaya, O. N.; Avramov, P. V.
DOI
10.1016/j.apsusc.2024.160825
발행일
2024-11-01
유형
Article
저널명
Applied Surface Science
권
672