O. Gultepe Et Al. , "An effective approach for hydrothermal synthesis of ZnO nanorod arrays activated under UV/Vis light: Different supporting ligands for hydrothermal precursor solutions," MATERIALS CHEMISTRY AND PHYSICS , vol.307, 2023
Gultepe, O. Et Al. 2023. An effective approach for hydrothermal synthesis of ZnO nanorod arrays activated under UV/Vis light: Different supporting ligands for hydrothermal precursor solutions. MATERIALS CHEMISTRY AND PHYSICS , vol.307 .
Gultepe, O., Atay, F., & Dikmen, Z., (2023). An effective approach for hydrothermal synthesis of ZnO nanorod arrays activated under UV/Vis light: Different supporting ligands for hydrothermal precursor solutions. MATERIALS CHEMISTRY AND PHYSICS , vol.307.
Gultepe, ORKUN, FERHUNDE ATAY, And ZEYNEP DİKMEN. "An effective approach for hydrothermal synthesis of ZnO nanorod arrays activated under UV/Vis light: Different supporting ligands for hydrothermal precursor solutions," MATERIALS CHEMISTRY AND PHYSICS , vol.307, 2023
Gultepe, ORKUN Et Al. "An effective approach for hydrothermal synthesis of ZnO nanorod arrays activated under UV/Vis light: Different supporting ligands for hydrothermal precursor solutions." MATERIALS CHEMISTRY AND PHYSICS , vol.307, 2023
Gultepe, O. Atay, F. And Dikmen, Z. (2023) . "An effective approach for hydrothermal synthesis of ZnO nanorod arrays activated under UV/Vis light: Different supporting ligands for hydrothermal precursor solutions." MATERIALS CHEMISTRY AND PHYSICS , vol.307.
@article{article, author={ORKUN GÜLTEPE Et Al. }, title={An effective approach for hydrothermal synthesis of ZnO nanorod arrays activated under UV/Vis light: Different supporting ligands for hydrothermal precursor solutions}, journal={MATERIALS CHEMISTRY AND PHYSICS}, year=2023}