OPEN ACCESS | PEER-REVIEWED | EDITED VOLUME
Edited by: Digambar M. Sapkal, Harshal M. Bachhav, Gaurav Mahadev Lohar, Sanjay P. Khairnar
ISBN: 978-93-95369-55-8 (paperback), 978-93-95369-46-6 (electronic)
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CHAPTER 9
Siddhartha Samanta1*, Ranjan Dutta1
1 School of Applied Science and Humanities Haldia Institute of Technology, Haldia, 721657 West Bengal, India
The field of Volatile Organic Chemical (VOC) sensors is rapidly growing, driven by the increasing demands of modern advanced technologies. Conducting polymers and their nanocomposites play a crucial role as chemical sensor materials, offering significant advantages over traditional inorganic semiconductors. The nano-sized particles in polymer-based sensing devices enhance both sensitivity and selectivity due to various interactions between the target chemicals and the polymer nanocomposite. Currently, polyaniline (PANI), Poly aminophenol, poly phenylenediamine and its nano composite are widely studied in the field of sensing materials. However, due to their inherently low conductivity, they are not effective standalone sensors. To overcome this limitation, silver, copper and Carbon nanotube (CNT) nanocomposites integrated with conjugated polymers have emerged as excellent sensing materials. This review highlights recent advancements in the development and design of conjugated polymer nanocomposite (CPNP)-based sensors, emphasizing their potential for highly selective and sensitive chemical detection.
Received: 12 August 2025, Revised: 08 September 2025, Accepted: 12 September 2025, Available online: 13 September 2025
Siddhartha Samanta, & Ranjan Dutta. (2025). Synthesis Pathways of Conducting Polymers and Nanocomposites for Hazardous Chemical Detection. In Materials Science: Advances in Synthesis, Characterization and Applications (Vol. 1) – Digambar M. Sapkal, Harshal M. Bachhav, Gaurav Mahadev Lohar, Sanjay P. Khairnar (Eds.) (pp. 113–124). Advent Publishing. https://doi.org/10.5281/zenodo.17112741
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