M. Z. Arkan Et Al. , "One Material-Opposite Triboelectrification: Molecular Engineering Regulated Triboelectrification on Silica Surface to Enhance TENG Efficiency," Molecules , vol.28, no.15, 2023
Arkan, M. Z. Et Al. 2023. One Material-Opposite Triboelectrification: Molecular Engineering Regulated Triboelectrification on Silica Surface to Enhance TENG Efficiency. Molecules , vol.28, no.15 .
Arkan, M. Z., Kinas, Z., Yalçın, E., Arkan, E., Özel, F., Karabiber, A., ... Chorążewski, M.(2023). One Material-Opposite Triboelectrification: Molecular Engineering Regulated Triboelectrification on Silica Surface to Enhance TENG Efficiency. Molecules , vol.28, no.15.
Arkan, Mesude Et Al. "One Material-Opposite Triboelectrification: Molecular Engineering Regulated Triboelectrification on Silica Surface to Enhance TENG Efficiency," Molecules , vol.28, no.15, 2023
Arkan, Mesude Z. Et Al. "One Material-Opposite Triboelectrification: Molecular Engineering Regulated Triboelectrification on Silica Surface to Enhance TENG Efficiency." Molecules , vol.28, no.15, 2023
Arkan, M. Z. Et Al. (2023) . "One Material-Opposite Triboelectrification: Molecular Engineering Regulated Triboelectrification on Silica Surface to Enhance TENG Efficiency." Molecules , vol.28, no.15.
@article{article, author={Mesude Zeliha Arkan Et Al. }, title={One Material-Opposite Triboelectrification: Molecular Engineering Regulated Triboelectrification on Silica Surface to Enhance TENG Efficiency}, journal={Molecules}, year=2023}