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Updated: Jun 27, 2026

Fabrication of Carbon Nanotube High-Frequency Nanoelectronic Biosensor for Sensing in High Ionic Strength Solutions
Published on: July 22, 2013
Electrochemical sensor based on multi-walled carbon nanotubes and two-dimensional zeolitic imidazolate framework
Somayeh Tajik1, Hadi Beitollahi2, Fariba Garkani Nejad2
1Research Center of Tropical and Infectious Diseases, Kerman University of Medical Sciences, Kerman, Iran.
Background And Purpose:
Cancer is a serious public health concern, hence the determination of dacarbazine as a significant chemotherapeutic agent is very important.
Experimental Approach:
In the present work, we use a facile method to synthesize a nanocomposite of multi-walled carbon nanotubes (MWCNTs) and two-dimensional zeolitic imidazolate framework nanosheets (2D ZIF-L NSs). The resulting MWCNTs/2D ZIF-L NSs nanocomposite was characterized by field-emission scanning electron microscopy. The MWCNTs/2D ZIF-L NSs nanocomposite was subsequently used to modify a screen-printed carbon electrode (SPCE) to achieve an electrochemical sensing platform for the detection of dacarbazine.
Key Results:
From cyclic voltammetric studies, it was found that the MWCNTs/2D ZIF-L NSs nanocomposite modified SPCE provided less anodic peak potential (700 mV) and higher anodic peak current (7.7 μA) for oxidation of dacarbazine when compared to other SPCEs. The MWCNTs/2D ZIF-L NSs/SPCE displayed good performance in the quantitative determination of dacarbazine. Under optimum conditions, the differential pulse voltammetry response exhibited a linear concentration range of 0.01 to 80.0 μM for dacarbazine with a relatively high sensitivity of 0.1384 μA μM-1 and an estimated detection limit of 0.004 μM. The MWCNTs/2D ZIF-L NSs/SPCE sensor was also successfully applied to the determination of dacarbazine in injections samples of dacarbazine.
Conclusion:
This detection method can be used as a valuable tool in the analysis of pharmaceutical formulations to bring benefits in cancer treatment.
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