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Enhancement of adsorption capacity of reduced graphene oxide by sulfonic acid functionalization: Malachite green and Zn (II) uptake
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E. Söğüt Et Al. , "Enhancement of adsorption capacity of reduced graphene oxide by sulfonic acid functionalization: Malachite green and Zn (II) uptake," MATERIALS CHEMISTRY AND PHYSICS , vol.256, 2020

Söğüt, E. Et Al. 2020. Enhancement of adsorption capacity of reduced graphene oxide by sulfonic acid functionalization: Malachite green and Zn (II) uptake. MATERIALS CHEMISTRY AND PHYSICS , vol.256 .

Söğüt, E., Karataş, Y., Gülcan, M., & Kılıç, N., (2020). Enhancement of adsorption capacity of reduced graphene oxide by sulfonic acid functionalization: Malachite green and Zn (II) uptake. MATERIALS CHEMISTRY AND PHYSICS , vol.256.

Söğüt, Eda Et Al. "Enhancement of adsorption capacity of reduced graphene oxide by sulfonic acid functionalization: Malachite green and Zn (II) uptake," MATERIALS CHEMISTRY AND PHYSICS , vol.256, 2020

Söğüt, Eda G. Et Al. "Enhancement of adsorption capacity of reduced graphene oxide by sulfonic acid functionalization: Malachite green and Zn (II) uptake." MATERIALS CHEMISTRY AND PHYSICS , vol.256, 2020

Söğüt, E. Et Al. (2020) . "Enhancement of adsorption capacity of reduced graphene oxide by sulfonic acid functionalization: Malachite green and Zn (II) uptake." MATERIALS CHEMISTRY AND PHYSICS , vol.256.

@article{article, author={Eda Gökırmak Söğüt Et Al. }, title={Enhancement of adsorption capacity of reduced graphene oxide by sulfonic acid functionalization: Malachite green and Zn (II) uptake}, journal={MATERIALS CHEMISTRY AND PHYSICS}, year=2020}