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Utilizing epicatechin voltammetric oxidation signal for the estimation of total phenolic content in the tea samples via the unmodified boron-doped diamond electrode surface
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H. S. Ali Et Al. , "Utilizing epicatechin voltammetric oxidation signal for the estimation of total phenolic content in the tea samples via the unmodified boron-doped diamond electrode surface," Microchemical Journal , vol.189, 2023

Ali, H. S. Et Al. 2023. Utilizing epicatechin voltammetric oxidation signal for the estimation of total phenolic content in the tea samples via the unmodified boron-doped diamond electrode surface. Microchemical Journal , vol.189 .

Ali, H. S., Barzani, H. A., & Yardım, Y., (2023). Utilizing epicatechin voltammetric oxidation signal for the estimation of total phenolic content in the tea samples via the unmodified boron-doped diamond electrode surface. Microchemical Journal , vol.189.

Ali, Hoshyar, Hemn A.H. Barzani, And Yavuz Yardım. "Utilizing epicatechin voltammetric oxidation signal for the estimation of total phenolic content in the tea samples via the unmodified boron-doped diamond electrode surface," Microchemical Journal , vol.189, 2023

Ali, Hoshyar S. Et Al. "Utilizing epicatechin voltammetric oxidation signal for the estimation of total phenolic content in the tea samples via the unmodified boron-doped diamond electrode surface." Microchemical Journal , vol.189, 2023

Ali, H. S. Barzani, H. A. And Yardım, Y. (2023) . "Utilizing epicatechin voltammetric oxidation signal for the estimation of total phenolic content in the tea samples via the unmodified boron-doped diamond electrode surface." Microchemical Journal , vol.189.

@article{article, author={Hoshyar Saadi Ali Et Al. }, title={Utilizing epicatechin voltammetric oxidation signal for the estimation of total phenolic content in the tea samples via the unmodified boron-doped diamond electrode surface}, journal={Microchemical Journal}, year=2023}