S. RZAYEVA Et Al. , "First-principles prediction of ferromagnetism and Curie temperature for transition metals doped single walled (6,0) SiC nanotubes: Materials for application in spintronics," Materials Science in Semiconductor Processing , vol.197, 2025
RZAYEVA, S. Et Al. 2025. First-principles prediction of ferromagnetism and Curie temperature for transition metals doped single walled (6,0) SiC nanotubes: Materials for application in spintronics. Materials Science in Semiconductor Processing , vol.197 .
RZAYEVA, S., Jafarova, V. N., & Roy, D., (2025). First-principles prediction of ferromagnetism and Curie temperature for transition metals doped single walled (6,0) SiC nanotubes: Materials for application in spintronics. Materials Science in Semiconductor Processing , vol.197.
RZAYEVA, SEVDA, Vusala Nabi Jafarova, And DEBARATİ DEY ROY . "First-principles prediction of ferromagnetism and Curie temperature for transition metals doped single walled (6,0) SiC nanotubes: Materials for application in spintronics," Materials Science in Semiconductor Processing , vol.197, 2025
RZAYEVA, SEVDA Et Al. "First-principles prediction of ferromagnetism and Curie temperature for transition metals doped single walled (6,0) SiC nanotubes: Materials for application in spintronics." Materials Science in Semiconductor Processing , vol.197, 2025
RZAYEVA, S. Jafarova, V. N. And Roy, D. (2025) . "First-principles prediction of ferromagnetism and Curie temperature for transition metals doped single walled (6,0) SiC nanotubes: Materials for application in spintronics." Materials Science in Semiconductor Processing , vol.197.
@article{article, author={SEVDA RZAYEVA Et Al. }, title={First-principles prediction of ferromagnetism and Curie temperature for transition metals doped single walled (6,0) SiC nanotubes: Materials for application in spintronics}, journal={Materials Science in Semiconductor Processing}, year=2025}