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A novel experimental and density functional theory study on palladium and nitrogen doped few layer graphene surface towards glucose adsorption and electrooxidation
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A. Caglar Et Al. , "A novel experimental and density functional theory study on palladium and nitrogen doped few layer graphene surface towards glucose adsorption and electrooxidation," JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS , vol.150, 2021

Caglar, A. Et Al. 2021. A novel experimental and density functional theory study on palladium and nitrogen doped few layer graphene surface towards glucose adsorption and electrooxidation. JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS , vol.150 .

Caglar, A., Duzenli, D., ÖNAL, I., Tezsevin, I., Sahin, O., & Demir Kıvrak, H., (2021). A novel experimental and density functional theory study on palladium and nitrogen doped few layer graphene surface towards glucose adsorption and electrooxidation. JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS , vol.150.

Caglar, Aykut Et Al. "A novel experimental and density functional theory study on palladium and nitrogen doped few layer graphene surface towards glucose adsorption and electrooxidation," JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS , vol.150, 2021

Caglar, Aykut Et Al. "A novel experimental and density functional theory study on palladium and nitrogen doped few layer graphene surface towards glucose adsorption and electrooxidation." JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS , vol.150, 2021

Caglar, A. Et Al. (2021) . "A novel experimental and density functional theory study on palladium and nitrogen doped few layer graphene surface towards glucose adsorption and electrooxidation." JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS , vol.150.

@article{article, author={Aykut Caglar Et Al. }, title={A novel experimental and density functional theory study on palladium and nitrogen doped few layer graphene surface towards glucose adsorption and electrooxidation}, journal={JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS}, year=2021}