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A review on synthetic strategies and gas sensing approach for polypyrrole-based hybrid nanocomposites

Journal

POLYMER ENGINEERING AND SCIENCE
Volume 61, Issue 12, Pages 2949-2973

Publisher

WILEY
DOI: 10.1002/pen.25822

Keywords

gas sensors; nanocomposites; polymerization; polypyrrole; properties

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PPy-based hybrid nanocomposites play a crucial role in sensing applications due to their unique physical and chemical properties. They have been widely utilized in industrial applications and show promising prospects for future applications.
Polypyrrole (PPy)-based hybrid nanocomposites of organic and inorganic hybrid materials are not restricted for academic research, but nowadays, they are useful to design innovative industrial applications such as fuel cell, solar cell, catalysts, sensors, energy, and medical applications. In recent applications, PPy and its hybrid composites have been emerged as promising sensors due to their unique physical and chemical properties. In this article, the role of PPy-based hybrid nanocomposites for the improvement in sensing applications has been discussed in detail. Along with this is the systematic discussion of the synthesis techniques of PPy sensory hybrid nanocomposites that provides a better understanding of this research area. Finally, certain limitations of PPy and its hybrid nanocomposites-based sensor are also discussed for sensing.

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