Electropolymerized Multilayer Conducting Polymers with Response to Gaseous Hydrogen Chloride
Qingli Hao, Xin Wang, Lude Lu, Xujie Yang, Vladimir M. Mirsky
Abstract
Qingli Hao, Xin Wang, Lude Lu, Xujie Yang, Vladimir M. Mirsky
Abstract
Abstract Summary: A step‐by‐step ‘all‐electrochemical’ approach has been presented to develop a multilayer structure of conducting polymers for gas sensors. The integrated structure includes a sensitive layer (polyaniline, PANI) and a conductive bridge consisting of poly(3,4‐ethylenedioxythiophene) (PEDOT). Good sensitivity, stability, and response of the multilayer material to gaseous HCl indicate a possible application of conductive polymers to provide a binding of sensitive elements in sensors or other fields. The conducting multilayer material, Au/pATP/PANI/PEDOT, was synthesized electrochemically. magnified image The conducting multilayer material, Au/pATP/PANI/PEDOT, was synthesized electrochemically.
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Abstract Summary: A step‐by‐step ‘all‐electrochemical’ approach has been presented to develop a multilayer structure of conducting polymers for gas sensors. The integrated structure includes a sensitive layer (polyaniline, PANI) and a conductive bridge consisting of poly(3,4‐ethylenedioxythiophene) (PEDOT). Good sensitivity, stability, and response of the multilayer material to gaseous HCl indicate a possible application of conductive polymers to provide a binding of sensitive elements in sensors or other fields. The conducting multilayer material, Au/pATP/PANI/PEDOT, was synthesized electrochemically. magnified image The conducting multilayer material, Au/pATP/PANI/PEDOT, was synthesized electrochemically.
Key concepts: PEDOT:PSS, Conductive polymer, Polyaniline, Materials science, Polymer, Electrical conductor, Electrochemistry, Chloride