Title : Spin Polarization-Assisted Dopant Segregation at a Coherent Phase Boundary.

Pub. Date : 2021 Dec 28

PMID : 34878783






5 Functional Relationships(s)
Download
Sentence
Compound Name
Protein Name
Organism
1 Through comparison of pristine and W-doped Fe3O4/Fe2O3 phase boundaries, it is revealed that the spin polarization of O atoms at the interface plays an important role in the periodic segregation of W atoms. Tungsten spindlin 1 Homo sapiens
2 After doping of W at this boundary, W atoms will selectively substitute the Fe atoms of Fe2O3 that directly bond with three spin-polarized O atoms, thereby resulting in the complete neutralization of the magnetic moments of the spin-polarized O atoms. Tungsten spindlin 1 Homo sapiens
3 After doping of W at this boundary, W atoms will selectively substitute the Fe atoms of Fe2O3 that directly bond with three spin-polarized O atoms, thereby resulting in the complete neutralization of the magnetic moments of the spin-polarized O atoms. Tungsten spindlin 1 Homo sapiens
4 After doping of W at this boundary, W atoms will selectively substitute the Fe atoms of Fe2O3 that directly bond with three spin-polarized O atoms, thereby resulting in the complete neutralization of the magnetic moments of the spin-polarized O atoms. Tungsten spindlin 1 Homo sapiens
5 After doping of W at this boundary, W atoms will selectively substitute the Fe atoms of Fe2O3 that directly bond with three spin-polarized O atoms, thereby resulting in the complete neutralization of the magnetic moments of the spin-polarized O atoms. Tungsten spindlin 1 Homo sapiens