Cite This Article

Facile Sol-Gel Synthesis of Carbon-Coated SnO2-Fe2O3 Core-Shell Nanoparticles for High-Rate Lithium-Ion Battery Anodes
Prof. Elena Vasilyeva; Dr. Aarav Mehta — SciMatic Journal of Applied Physics and Materials Science (2026)
Back to Article
APA APA 7th
Vasilyeva, P. E., & Mehta, D. A. (2026). Facile Sol-Gel Synthesis of Carbon-Coated SnO2-Fe2O3 Core-Shell Nanoparticles for High-Rate Lithium-Ion Battery Anodes. SciMatic Journal of Applied Physics and Materials Science, 1(1), 8-15.
MLA MLA 9th
Vasilyeva, Prof. Elena, and Dr. Aarav Mehta. "Facile Sol-Gel Synthesis of Carbon-Coated SnO2-Fe2O3 Core-Shell Nanoparticles for High-Rate Lithium-Ion Battery Anodes." SciMatic Journal of Applied Physics and Materials Science, vol. 1, no. 1, 2026, pp. 8-15.
CHI Chicago
Vasilyeva, Prof. Elena, and Dr. Aarav Mehta. "Facile Sol-Gel Synthesis of Carbon-Coated SnO2-Fe2O3 Core-Shell Nanoparticles for High-Rate Lithium-Ion Battery Anodes." SciMatic Journal of Applied Physics and Materials Science 1, no. 1 (2026): 8-15.
HAR Harvard
Vasilyeva, P. E. & Mehta, D. A. (2026) 'Facile Sol-Gel Synthesis of Carbon-Coated SnO2-Fe2O3 Core-Shell Nanoparticles for High-Rate Lithium-Ion Battery Anodes', SciMatic Journal of Applied Physics and Materials Science, 1(1), pp. 8-15.
IEEE IEEE
P. E. Vasilyeva, and D. A. Mehta, "Facile Sol-Gel Synthesis of Carbon-Coated SnO2-Fe2O3 Core-Shell Nanoparticles for High-Rate Lithium-Ion Battery Anodes," SciMatic Journal of Applied Physics and Materials Science, vol. 1, no. 1, pp. 8-15, 2026.
VAN Vancouver
Vasilyeva PE, Mehta DA. Facile Sol-Gel Synthesis of Carbon-Coated SnO2-Fe2O3 Core-Shell Nanoparticles for High-Rate Lithium-Ion Battery Anodes. SciMatic Journal of Applied Physics and Materials Science. 2026;1(1):8-15.
BIB BibTeX
@article{prof2026,
  title     = {Facile Sol-Gel Synthesis of Carbon-Coated SnO2-Fe2O3 Core-Shell Nanoparticles for High-Rate Lithium-Ion Battery Anodes},
  author    = {Prof. Elena Vasilyeva and Dr. Aarav Mehta},
  journal   = {SciMatic Journal of Applied Physics and Materials Science},
  volume    = {1},
  number    = {1},
  pages     = {8-15},
  year      = {2026},
}