Atıf Formatları
Towards high cycle stability yolk-shell structured silicon/rGO/MWCNT hybrid composites for Li-ion battery negative electrodes
  • IEEE
  • ACM
  • APA
  • Chicago
  • MLA
  • Harvard
  • BibTeX

U. Toçoğlu Et Al. , "Towards high cycle stability yolk-shell structured silicon/rGO/MWCNT hybrid composites for Li-ion battery negative electrodes," Materials Chemistry and Physics , vol.240, 2020

Toçoğlu, U. Et Al. 2020. Towards high cycle stability yolk-shell structured silicon/rGO/MWCNT hybrid composites for Li-ion battery negative electrodes. Materials Chemistry and Physics , vol.240 .

Toçoğlu, U., ALAF, M., & Akbulut, H., (2020). Towards high cycle stability yolk-shell structured silicon/rGO/MWCNT hybrid composites for Li-ion battery negative electrodes. Materials Chemistry and Physics , vol.240.

Toçoğlu, Ubeyd, MİRAÇ ALAF, And Hatem Akbulut. "Towards high cycle stability yolk-shell structured silicon/rGO/MWCNT hybrid composites for Li-ion battery negative electrodes," Materials Chemistry and Physics , vol.240, 2020

Toçoğlu, Ubeyd Et Al. "Towards high cycle stability yolk-shell structured silicon/rGO/MWCNT hybrid composites for Li-ion battery negative electrodes." Materials Chemistry and Physics , vol.240, 2020

Toçoğlu, U. ALAF, M. And Akbulut, H. (2020) . "Towards high cycle stability yolk-shell structured silicon/rGO/MWCNT hybrid composites for Li-ion battery negative electrodes." Materials Chemistry and Physics , vol.240.

@article{article, author={Ubeyd Toçoğlu Et Al. }, title={Towards high cycle stability yolk-shell structured silicon/rGO/MWCNT hybrid composites for Li-ion battery negative electrodes}, journal={Materials Chemistry and Physics}, year=2020}