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Orange Peel Derived-Nitrogen and Sulfur Co-doped Carbon Dots: a Nano-booster for Enhancing ORR Electrocatalytic Performance of 3D Graphene Networks
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C. KARAMAN, "Orange Peel Derived-Nitrogen and Sulfur Co-doped Carbon Dots: a Nano-booster for Enhancing ORR Electrocatalytic Performance of 3D Graphene Networks," ELECTROANALYSIS , vol.33, no.5, pp.1356-1369, 2021

KARAMAN, C. 2021. Orange Peel Derived-Nitrogen and Sulfur Co-doped Carbon Dots: a Nano-booster for Enhancing ORR Electrocatalytic Performance of 3D Graphene Networks. ELECTROANALYSIS , vol.33, no.5 , 1356-1369.

KARAMAN, C., (2021). Orange Peel Derived-Nitrogen and Sulfur Co-doped Carbon Dots: a Nano-booster for Enhancing ORR Electrocatalytic Performance of 3D Graphene Networks. ELECTROANALYSIS , vol.33, no.5, 1356-1369.

KARAMAN, CEREN. "Orange Peel Derived-Nitrogen and Sulfur Co-doped Carbon Dots: a Nano-booster for Enhancing ORR Electrocatalytic Performance of 3D Graphene Networks," ELECTROANALYSIS , vol.33, no.5, 1356-1369, 2021

KARAMAN, CEREN. "Orange Peel Derived-Nitrogen and Sulfur Co-doped Carbon Dots: a Nano-booster for Enhancing ORR Electrocatalytic Performance of 3D Graphene Networks." ELECTROANALYSIS , vol.33, no.5, pp.1356-1369, 2021

KARAMAN, C. (2021) . "Orange Peel Derived-Nitrogen and Sulfur Co-doped Carbon Dots: a Nano-booster for Enhancing ORR Electrocatalytic Performance of 3D Graphene Networks." ELECTROANALYSIS , vol.33, no.5, pp.1356-1369.

@article{article, author={CEREN KARAMAN}, title={Orange Peel Derived-Nitrogen and Sulfur Co-doped Carbon Dots: a Nano-booster for Enhancing ORR Electrocatalytic Performance of 3D Graphene Networks}, journal={ELECTROANALYSIS}, year=2021, pages={1356-1369} }