Selective Electrochemical Detection of Thymoquinone in Black Cumin Using Titanium Oxide-Modified Graphite Paste Electrode

Author:

Banerjee Sanjoy1ORCID,Dhara Milan2,Naskar Hemanta3,Ghatak Barnali3,Babar Ali SK.4,Das Nityananda5,Das Deepak Kumar6,Bandyopadhyay Rajib7,Tudu Bipan7

Affiliation:

1. Computer Science and Engineering (IOT n CS), Future Institute of Technology, Kolkata, West Bengal 700154, India

2. Electronics and Communication Engineering, Future Institute of Engineering and Management, Kolkata, West Bengal 700150, India

3. SBH ElectroCloud Pvt. Ltd., Kolkata, West Bengal 700150, India

4. Electronics and Communication Engineering, Aliah University, Kolkata 700 160, India

5. Department of Physics, Jagannath Kishore College, Purulia, West Bengal 723101, India

6. Department of Chemistry and Nanoscience, GLA University, Mathura, Uttar Pradesh, India

7. Instrumentation and Electronics Engineering, Jadavpur University, Kolkata, West Bengal 700106, India

Abstract

Thymoquinone, a significant component in medicine and the spice industry due to its potent antioxidant properties, is the focus of this paper. The development of a titanium oxide-modified graphite paste electrode is presented for the detection of thymoquinone in black cumin. The electrochemical characteristics of the thymoquinone molecule were explored in a 0.1 M phosphate buffer solution of pH of 6. The modified graphite paste electrode exhibits excellent linearity across the concentration range of 0.1-200 [Formula: see text]M with limit of detection is 0.02 [Formula: see text]M. The developed electrode exhibits commendable repeatability, reproducibility and exceptional sensitivity towards thymoquinone. The separation of various concentrations of thymoquinone samples such as Mousumi, Priya Gold, Sunrise and DNV using Principal Component Analysis (PCA) with the Separability Index (SI) of 67.89 utilized to differentiate between different thymoquinone concentrations.

Publisher

World Scientific Pub Co Pte Ltd

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