O. KARAMAN Et Al. , "Electrochemical cardiac troponin I immunosensor based on nitrogen and boron-doped graphene quantum dots electrode platform and Ce-doped SnO2/SnS2 signal amplification," MATERIALS TODAY CHEMISTRY , vol.23, 2022
KARAMAN, O. Et Al. 2022. Electrochemical cardiac troponin I immunosensor based on nitrogen and boron-doped graphene quantum dots electrode platform and Ce-doped SnO2/SnS2 signal amplification. MATERIALS TODAY CHEMISTRY , vol.23 .
KARAMAN, O., Ozcan, N., KARAMAN, C., Yola, B. B., Atar, N., & Yola, M. L., (2022). Electrochemical cardiac troponin I immunosensor based on nitrogen and boron-doped graphene quantum dots electrode platform and Ce-doped SnO2/SnS2 signal amplification. MATERIALS TODAY CHEMISTRY , vol.23.
KARAMAN, ONUR Et Al. "Electrochemical cardiac troponin I immunosensor based on nitrogen and boron-doped graphene quantum dots electrode platform and Ce-doped SnO2/SnS2 signal amplification," MATERIALS TODAY CHEMISTRY , vol.23, 2022
KARAMAN, ONUR Et Al. "Electrochemical cardiac troponin I immunosensor based on nitrogen and boron-doped graphene quantum dots electrode platform and Ce-doped SnO2/SnS2 signal amplification." MATERIALS TODAY CHEMISTRY , vol.23, 2022
KARAMAN, O. Et Al. (2022) . "Electrochemical cardiac troponin I immunosensor based on nitrogen and boron-doped graphene quantum dots electrode platform and Ce-doped SnO2/SnS2 signal amplification." MATERIALS TODAY CHEMISTRY , vol.23.
@article{article, author={ONUR KARAMAN Et Al. }, title={Electrochemical cardiac troponin I immunosensor based on nitrogen and boron-doped graphene quantum dots electrode platform and Ce-doped SnO2/SnS2 signal amplification}, journal={MATERIALS TODAY CHEMISTRY}, year=2022}