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Influence of substrate temperature and Mn/Y co-doping concentration on the morphological, structural and optical properties of CuO nanostructured film deposited by the spray pyrolysis method
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B. Hussein Et Al. , "Influence of substrate temperature and Mn/Y co-doping concentration on the morphological, structural and optical properties of CuO nanostructured film deposited by the spray pyrolysis method," Physica B: Condensed Matter , vol.696, 2025

Hussein, B. Et Al. 2025. Influence of substrate temperature and Mn/Y co-doping concentration on the morphological, structural and optical properties of CuO nanostructured film deposited by the spray pyrolysis method. Physica B: Condensed Matter , vol.696 .

Hussein, B., İmer, A. G., & Aycibin, M., (2025). Influence of substrate temperature and Mn/Y co-doping concentration on the morphological, structural and optical properties of CuO nanostructured film deposited by the spray pyrolysis method. Physica B: Condensed Matter , vol.696.

Hussein, Balen, Arife Gençer İmer, And Murat Aycibin. "Influence of substrate temperature and Mn/Y co-doping concentration on the morphological, structural and optical properties of CuO nanostructured film deposited by the spray pyrolysis method," Physica B: Condensed Matter , vol.696, 2025

Hussein, Balen Et Al. "Influence of substrate temperature and Mn/Y co-doping concentration on the morphological, structural and optical properties of CuO nanostructured film deposited by the spray pyrolysis method." Physica B: Condensed Matter , vol.696, 2025

Hussein, B. İmer, A. G. And Aycibin, M. (2025) . "Influence of substrate temperature and Mn/Y co-doping concentration on the morphological, structural and optical properties of CuO nanostructured film deposited by the spray pyrolysis method." Physica B: Condensed Matter , vol.696.

@article{article, author={Balen Hussein Et Al. }, title={Influence of substrate temperature and Mn/Y co-doping concentration on the morphological, structural and optical properties of CuO nanostructured film deposited by the spray pyrolysis method}, journal={Physica B: Condensed Matter}, year=2025}