This book presents a comprehensive study on the development of advanced nanocatalysts based on polyaniline (PANI) and its metal-doped derivatives with manganese (Mn) and cobalt (Co). Focusing on innovative synthesis routes and detailed physicochemical characterization it explores the structural morphological and catalytic properties of PANI composites. The integration of transition metals into the polyaniline matrix enhances catalytic performance stability and reusability making these materials highly promising for various organic synthesis and environmental applications.Through systematic experimentation and analytical techniques such as FTIR SEM and XRD the book provides valuable insights into the correlation between material structure and catalytic efficiency. Designed for researchers postgraduate students and professionals in chemistry and materials science it bridges the gap between fundamental polymer science and practical catalysis. This work contributes to the growing field of green chemistry and nanotechnology by emphasizing eco-friendly cost-effective and efficient catalytic systems based on conducting polymer composites.
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