Chapter 2: Synthesis and characterization of various conducting polymers
Chapter 3: Properties of Conducting Polymers
Chapter 4: Energy Harvesting Devices (photovoltaic, thermoelectric and piezoelectric)
Chapter 5: Energy Storage Devices (supercapacitors and batteries)
Chapter 6: Nanoelectronic Devices (field effect transistors, light emitting diodes, field emission and electrochromic displays)
Chapter 7: Environmental Remediation (Adsorption)
Chapter 8: Electromagnetic Interference (EMI) Absorption and Shielding
Chapter 9: Sensors (chemical, gas and optical sensors)
Chapter 10: Biomedical Applications (drug delivery, tissue engineering and bio sensors)
Chapter 11: Advances and applications of solar energy in conducting polymer technology
Chapter 12: Towards the conducting polymer based catalysts to eliminate Pt for dye sensitized solar cell applications
Chapter 13: Polymeric nanocomposites: an alternative and effective way to replace Pt in dye sensitized solar cells
Chapter 14: Progress in the field of conducting polymer based counter electrodes for dye sensitized solar cell application
This book presents synthesis methods, characterization techniques, properties and applications of hybrid conducting polymers. Special emphasis is given to the applications of hybrid conductive polymers, with chapters ranging from electronic devices, environmental remediation, and sensors, to medical applications.