Y. Karataş Et Al. , "Silica supported ternary NiRuPt alloy nanoparticles: Highly efficient heterogeneous catalyst for H2 generation via selective decomposition of hydrous hydrazine in alkaline solution," International Journal of Hydrogen Energy , vol.45, pp.27098-27113, 2020
Karataş, Y. Et Al. 2020. Silica supported ternary NiRuPt alloy nanoparticles: Highly efficient heterogeneous catalyst for H2 generation via selective decomposition of hydrous hydrazine in alkaline solution. International Journal of Hydrogen Energy , vol.45 , 27098-27113.
Karataş, Y., Gülcan, M., & Zahmakıran, M., (2020). Silica supported ternary NiRuPt alloy nanoparticles: Highly efficient heterogeneous catalyst for H2 generation via selective decomposition of hydrous hydrazine in alkaline solution. International Journal of Hydrogen Energy , vol.45, 27098-27113.
Karataş, , Mehmet Gülcan, And Mehmet Zahmakıran. "Silica supported ternary NiRuPt alloy nanoparticles: Highly efficient heterogeneous catalyst for H2 generation via selective decomposition of hydrous hydrazine in alkaline solution," International Journal of Hydrogen Energy , vol.45, 27098-27113, 2020
Karataş, Yaşar Et Al. "Silica supported ternary NiRuPt alloy nanoparticles: Highly efficient heterogeneous catalyst for H2 generation via selective decomposition of hydrous hydrazine in alkaline solution." International Journal of Hydrogen Energy , vol.45, pp.27098-27113, 2020
Karataş, Y. Gülcan, M. And Zahmakıran, M. (2020) . "Silica supported ternary NiRuPt alloy nanoparticles: Highly efficient heterogeneous catalyst for H2 generation via selective decomposition of hydrous hydrazine in alkaline solution." International Journal of Hydrogen Energy , vol.45, pp.27098-27113.
@article{article, author={ Yaşar Karataş Et Al. }, title={Silica supported ternary NiRuPt alloy nanoparticles: Highly efficient heterogeneous catalyst for H2 generation via selective decomposition of hydrous hydrazine in alkaline solution}, journal={International Journal of Hydrogen Energy}, year=2020, pages={27098-27113} }