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Synthesis of PTh/PEDOT Films into FTO Substrate by Electrodeposition, for Energy Storage Systems
by
García-Alamilla, Ricardo
, Vázquez-Loredo, Daniel Alejandro
, Páramo-García, Ulises
, Pino-Pérez, Luis Alejandro Macclesh Del
, Gallardo-Rivas, Nohra Violeta
, Campa-Guevara, Diana Lucia
in
Atomic force microscopy
/ Batteries
/ Composite materials
/ conducting polymers
/ copolymer
/ Copolymerization
/ Copolymers
/ Dielectric films
/ Electrochemical analysis
/ Electrochemical reactions
/ Electrodeposition
/ electropolymerization
/ Energy management systems
/ Energy storage
/ Fluorine
/ Fourier transforms
/ Functional groups
/ Infrared spectroscopy
/ Lithium
/ Monomers
/ Optical microscopy
/ Optical properties
/ Oxidation
/ PEDOT
/ Polymerization
/ Polymers
/ Polythiophene
/ PTh
/ Substrates
/ Sulfur
/ Thin films
/ Tin oxides
2025
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Synthesis of PTh/PEDOT Films into FTO Substrate by Electrodeposition, for Energy Storage Systems
by
García-Alamilla, Ricardo
, Vázquez-Loredo, Daniel Alejandro
, Páramo-García, Ulises
, Pino-Pérez, Luis Alejandro Macclesh Del
, Gallardo-Rivas, Nohra Violeta
, Campa-Guevara, Diana Lucia
in
Atomic force microscopy
/ Batteries
/ Composite materials
/ conducting polymers
/ copolymer
/ Copolymerization
/ Copolymers
/ Dielectric films
/ Electrochemical analysis
/ Electrochemical reactions
/ Electrodeposition
/ electropolymerization
/ Energy management systems
/ Energy storage
/ Fluorine
/ Fourier transforms
/ Functional groups
/ Infrared spectroscopy
/ Lithium
/ Monomers
/ Optical microscopy
/ Optical properties
/ Oxidation
/ PEDOT
/ Polymerization
/ Polymers
/ Polythiophene
/ PTh
/ Substrates
/ Sulfur
/ Thin films
/ Tin oxides
2025
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Synthesis of PTh/PEDOT Films into FTO Substrate by Electrodeposition, for Energy Storage Systems
by
García-Alamilla, Ricardo
, Vázquez-Loredo, Daniel Alejandro
, Páramo-García, Ulises
, Pino-Pérez, Luis Alejandro Macclesh Del
, Gallardo-Rivas, Nohra Violeta
, Campa-Guevara, Diana Lucia
in
Atomic force microscopy
/ Batteries
/ Composite materials
/ conducting polymers
/ copolymer
/ Copolymerization
/ Copolymers
/ Dielectric films
/ Electrochemical analysis
/ Electrochemical reactions
/ Electrodeposition
/ electropolymerization
/ Energy management systems
/ Energy storage
/ Fluorine
/ Fourier transforms
/ Functional groups
/ Infrared spectroscopy
/ Lithium
/ Monomers
/ Optical microscopy
/ Optical properties
/ Oxidation
/ PEDOT
/ Polymerization
/ Polymers
/ Polythiophene
/ PTh
/ Substrates
/ Sulfur
/ Thin films
/ Tin oxides
2025
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Synthesis of PTh/PEDOT Films into FTO Substrate by Electrodeposition, for Energy Storage Systems
Journal Article
Synthesis of PTh/PEDOT Films into FTO Substrate by Electrodeposition, for Energy Storage Systems
2025
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Overview
Thin films of monomeric species polythiophene (PTh), poly-(3,4-ethylenedioxythiophene) (PEDOT), and the copolymer PTh/PEDOT were prepared through electropolymerization and deposited above fluorine-doped tin oxide (FTO) substrates. The functional groups of the monomeric species (PTh, PEDOT) and polymeric species (PTh/PEDOT) were characterized by Fourier-transform infrared spectroscopy, while morphological properties were evaluated using scanning electron microscopy, optical microscopy, and atomic force microscopy. The analysis showed that monomers films exhibited less material deposition; otherwise, the copolymer PTh/PEDOT showed better deposition on substrate. In addition, the electrochemical characterization showed that the materials that resulted from copolymerization presented an improvement in electrochemical properties relating to monomer properties. The effect of overoxidation of the monomers applied during the electropolymerization process is also known.
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