| Authors | سمیه استکی,روح اله فرقدان |
|---|---|
| Journal | Physical Chemistry Chemical Physics |
| Page number | 1 |
| Volume number | 28 |
| IF | ثبت نشده |
| Paper Type | Full Paper |
| Published At | 2025-07-25 |
| Journal Grade | Scientific - research |
| Journal Type | Electronic |
| Journal Country | Iran, Islamic Republic Of |
| Journal Index | JCR ,SCOPUS |
Abstract
We investigated the spin caloritronic properties of zigzag silicon carbide nanoribbons with asymmetric fluorine edges (2F-8ZSiCNR-1F) doped with boron (B) or nitrogen (N) using density functional theory. Doping 2F-8ZSiCNRs-F with group III/V elements changes band structure states near the Fermi surface and modifies the systems magnetic moment. The doped structures exhibit magnetic metallic, halfmetallic, and spin-semiconducting properties, with the dopant type and position significantly influencing spin-dependent thermoelectric properties. Pure thermal spin current reach 50–90 nA, while B and N doping induce perfect spin-filtering with negative differential thermal resistance. At zero chemical potential, the spin Seebeck coefficient (SS) ranges from 0.01 mV Kÿ1 to 1.5 mV Kÿ1. These results highlight the potential of impurity engineering to enhance thermoelectric performance in spin caloritronic applications.
