A. Attar Et Al. , "Bio-capped multifunctional CuO nanoparticles via Knautia arvensis for dye removal, antibacterial andantifungal efficiency, and molecular docking," MATERIALS RESEARCH EXPRESS , no.11, pp.1-12, 2024
Attar, A. Et Al. 2024. Bio-capped multifunctional CuO nanoparticles via Knautia arvensis for dye removal, antibacterial andantifungal efficiency, and molecular docking. MATERIALS RESEARCH EXPRESS , no.11 , 1-12.
Attar, A., Arı Yuka, S., & Altıkatoğlu Yapaöz, M., (2024). Bio-capped multifunctional CuO nanoparticles via Knautia arvensis for dye removal, antibacterial andantifungal efficiency, and molecular docking. MATERIALS RESEARCH EXPRESS , no.11, 1-12.
Attar, Azade, Selcen ARI YUKA, And Melda ALTIKATOĞLU YAPAÖZ. "Bio-capped multifunctional CuO nanoparticles via Knautia arvensis for dye removal, antibacterial andantifungal efficiency, and molecular docking," MATERIALS RESEARCH EXPRESS , no.11, 1-12, 2024
Attar, Azade Et Al. "Bio-capped multifunctional CuO nanoparticles via Knautia arvensis for dye removal, antibacterial andantifungal efficiency, and molecular docking." MATERIALS RESEARCH EXPRESS , no.11, pp.1-12, 2024
Attar, A. Arı Yuka, S. And Altıkatoğlu Yapaöz, M. (2024) . "Bio-capped multifunctional CuO nanoparticles via Knautia arvensis for dye removal, antibacterial andantifungal efficiency, and molecular docking." MATERIALS RESEARCH EXPRESS , no.11, pp.1-12.
@article{article, author={Azade ATTAR Et Al. }, title={Bio-capped multifunctional CuO nanoparticles via Knautia arvensis for dye removal, antibacterial andantifungal efficiency, and molecular docking}, journal={MATERIALS RESEARCH EXPRESS}, year=2024, pages={1-12} }