@article{Mizher Radhi2019, 
author = {Muhammed Mizher Radhi and Anfal Ismael Ibrahim and Yousif Kadhim Al-Haidarie and Sura Ali Al-Asadi and Emad Abbas Jaffar Al-Mulla},
title = {Rifampicin: Electrochemical Effect on Blood Component by Cyclic Voltammetry Using Nano-Sensor},
year = {2019},
journal = {Nano Biomedicine and Engineering},
volume = {11},
number = {2},
pages = {150-156},
keywords = {Rifampicin, Blood medium, Cyclic voltammetry, CNT/GCE},
url = {https://www.sciopen.com/article/10.5101/nbe.v11i2.p150-156},
doi = {10.5101/nbe.v11i2.p150-156},
abstract = {Rifampicin (RIF) compound was analyzed by electrochemical study using cyclic voltammetric method to characterize the electrochemical properties in blood medium. Glassy carbon electrode (GCE) was modified with carbon nanotubes (CNT) as a high sensitive sensor for using in the electro-analysis of RIF in blood medium. It was found that oxidation and reduction current peaks of RIF in blood medium were at the potential of 0.5 and -0.5 V, respectively. Different concentrations, pH, scan rates, reliability and stability of RIF in blood medium were studied. The diffusion coefficient of oxidation and reduction was determined using the Randles-Seveik equation. The result showed the average value of oxidation and reduction were 2.66 × 10-5 and 8.72 × 10-5 cm2s-1, respectively.}
}