M. T. Acar Et Al. , "Improving the wettability and corrosion behavior of Cp-Ti by applying anodization surface treatment with the addition of boric acid, graphene oxide and hydroxyapatite," MATERIALS TODAY COMMUNICATIONS , vol.31, 2022
Acar, M. T. Et Al. 2022. Improving the wettability and corrosion behavior of Cp-Ti by applying anodization surface treatment with the addition of boric acid, graphene oxide and hydroxyapatite. MATERIALS TODAY COMMUNICATIONS , vol.31 .
Acar, M. T., Kovaci, H., & Celik, A., (2022). Improving the wettability and corrosion behavior of Cp-Ti by applying anodization surface treatment with the addition of boric acid, graphene oxide and hydroxyapatite. MATERIALS TODAY COMMUNICATIONS , vol.31.
Acar, Muhammet, Halim KOVACI, And Ayhan ÇELİK. "Improving the wettability and corrosion behavior of Cp-Ti by applying anodization surface treatment with the addition of boric acid, graphene oxide and hydroxyapatite," MATERIALS TODAY COMMUNICATIONS , vol.31, 2022
Acar, Muhammet T. Et Al. "Improving the wettability and corrosion behavior of Cp-Ti by applying anodization surface treatment with the addition of boric acid, graphene oxide and hydroxyapatite." MATERIALS TODAY COMMUNICATIONS , vol.31, 2022
Acar, M. T. Kovaci, H. And Celik, A. (2022) . "Improving the wettability and corrosion behavior of Cp-Ti by applying anodization surface treatment with the addition of boric acid, graphene oxide and hydroxyapatite." MATERIALS TODAY COMMUNICATIONS , vol.31.
@article{article, author={Muhammet Taha ACAR Et Al. }, title={Improving the wettability and corrosion behavior of Cp-Ti by applying anodization surface treatment with the addition of boric acid, graphene oxide and hydroxyapatite}, journal={MATERIALS TODAY COMMUNICATIONS}, year=2022}