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Polypyrrole Polyethylene Composite for Controllable Linear Actuators in Different Organic Electrolytes

Controllable linear actuation of polypyrrole (PPy) is the envisaged goal where only one ion dominates direction (here anions) in reversible redox cycles. PPy with polyethylene oxide (PEO) doped with dodecylbenzenesulfonate forms PPy-PEO/DBS films (PPy-PEO), which are applied in propylene carbonate (...

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Autores principales: Khuyen, Nguyen Quang, Nguyen, Ngoc Tuan, Kiefer, Rudolf
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8781785/
https://www.ncbi.nlm.nih.gov/pubmed/35057260
http://dx.doi.org/10.3390/ma15020540
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author Khuyen, Nguyen Quang
Nguyen, Ngoc Tuan
Kiefer, Rudolf
author_facet Khuyen, Nguyen Quang
Nguyen, Ngoc Tuan
Kiefer, Rudolf
author_sort Khuyen, Nguyen Quang
collection PubMed
description Controllable linear actuation of polypyrrole (PPy) is the envisaged goal where only one ion dominates direction (here anions) in reversible redox cycles. PPy with polyethylene oxide (PEO) doped with dodecylbenzenesulfonate forms PPy-PEO/DBS films (PPy-PEO), which are applied in propylene carbonate (PC) solvent with electrolytes such as 1-ethyl-2,3-dimethylimidazolium trifluoromethanesulfonate (EDMICF(3)SO(3)), sodium perchlorate (NaClO(4)) and tetrabutylammonium hexafluorophosphate (TBAPF(6)) and compared in their linear actuation properties with pristine PPy/DBS samples. PPy-PEO showed for all applied electrolytes that only expansion at oxidation appeared in cyclic voltammetric studies, while pristine PPy/DBS had mixed-ion actuation in all electrolytes. The electrolyte TBAPF(6)-PC revealed for PPy-PEO best results with 18% strain (PPy/DBS had 8.5% strain), 2 times better strain rates, 1.8 times higher electronic conductivity, 1.4 times higher charge densities and 1.5 times higher diffusion coefficients in comparison to PPy/DBS. Long-term measurements up to 1000 cycles at 0.1 Hz revealed strain over 4% for PPy-PEO linear actuators, showing that combination of PPy/DBS with PEO gives excellent material for artificial muscle-like applications envisaged for smart textiles and soft robotics. FTIR and Raman spectroscopy confirmed PEO content in PPy. Electrochemical impedance spectroscopy (EIS) of PPy samples revealed 1.3 times higher ion conductivity of PPy-PEO films in PC solvent. Scanning electron microscopy (SEM) was used to investigate morphologies of PPy samples, and EDX spectroscopy was conducted to determine ion contents of oxidized/reduced films.
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spelling pubmed-87817852022-01-22 Polypyrrole Polyethylene Composite for Controllable Linear Actuators in Different Organic Electrolytes Khuyen, Nguyen Quang Nguyen, Ngoc Tuan Kiefer, Rudolf Materials (Basel) Article Controllable linear actuation of polypyrrole (PPy) is the envisaged goal where only one ion dominates direction (here anions) in reversible redox cycles. PPy with polyethylene oxide (PEO) doped with dodecylbenzenesulfonate forms PPy-PEO/DBS films (PPy-PEO), which are applied in propylene carbonate (PC) solvent with electrolytes such as 1-ethyl-2,3-dimethylimidazolium trifluoromethanesulfonate (EDMICF(3)SO(3)), sodium perchlorate (NaClO(4)) and tetrabutylammonium hexafluorophosphate (TBAPF(6)) and compared in their linear actuation properties with pristine PPy/DBS samples. PPy-PEO showed for all applied electrolytes that only expansion at oxidation appeared in cyclic voltammetric studies, while pristine PPy/DBS had mixed-ion actuation in all electrolytes. The electrolyte TBAPF(6)-PC revealed for PPy-PEO best results with 18% strain (PPy/DBS had 8.5% strain), 2 times better strain rates, 1.8 times higher electronic conductivity, 1.4 times higher charge densities and 1.5 times higher diffusion coefficients in comparison to PPy/DBS. Long-term measurements up to 1000 cycles at 0.1 Hz revealed strain over 4% for PPy-PEO linear actuators, showing that combination of PPy/DBS with PEO gives excellent material for artificial muscle-like applications envisaged for smart textiles and soft robotics. FTIR and Raman spectroscopy confirmed PEO content in PPy. Electrochemical impedance spectroscopy (EIS) of PPy samples revealed 1.3 times higher ion conductivity of PPy-PEO films in PC solvent. Scanning electron microscopy (SEM) was used to investigate morphologies of PPy samples, and EDX spectroscopy was conducted to determine ion contents of oxidized/reduced films. MDPI 2022-01-12 /pmc/articles/PMC8781785/ /pubmed/35057260 http://dx.doi.org/10.3390/ma15020540 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Khuyen, Nguyen Quang
Nguyen, Ngoc Tuan
Kiefer, Rudolf
Polypyrrole Polyethylene Composite for Controllable Linear Actuators in Different Organic Electrolytes
title Polypyrrole Polyethylene Composite for Controllable Linear Actuators in Different Organic Electrolytes
title_full Polypyrrole Polyethylene Composite for Controllable Linear Actuators in Different Organic Electrolytes
title_fullStr Polypyrrole Polyethylene Composite for Controllable Linear Actuators in Different Organic Electrolytes
title_full_unstemmed Polypyrrole Polyethylene Composite for Controllable Linear Actuators in Different Organic Electrolytes
title_short Polypyrrole Polyethylene Composite for Controllable Linear Actuators in Different Organic Electrolytes
title_sort polypyrrole polyethylene composite for controllable linear actuators in different organic electrolytes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8781785/
https://www.ncbi.nlm.nih.gov/pubmed/35057260
http://dx.doi.org/10.3390/ma15020540
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AT kieferrudolf polypyrrolepolyethylenecompositeforcontrollablelinearactuatorsindifferentorganicelectrolytes