Novel conducting polyaniline bearing functional groups

A copolymer formed from aniline and o-aminobenzylamine (ABA) was electrochemically synthesized from a solution of ABA and aniline with a mole ratio of 85:15. Its properties were studied by cyclic voltammetry. Relative conductivity measurements have been carried out showing that the copolymer's...

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Autores principales: Raffa, D.L., Battaglini, F.
Formato: JOUR
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Acceso en línea:http://hdl.handle.net/20.500.12110/paper_00220728_v504_n1_p120_Raffa
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spelling todo:paper_00220728_v504_n1_p120_Raffa2023-10-03T14:25:48Z Novel conducting polyaniline bearing functional groups Raffa, D.L. Battaglini, F. Biosensors Molecular switches o-Aminobenzylamine Poly(aniline) Amines Biosensors Copolymers Cyclic voltammetry Electric conductivity of solids Electrochemistry Synthesis (chemical) Aminobenzylamine Molecular switches Polyaniline Conductive plastics A copolymer formed from aniline and o-aminobenzylamine (ABA) was electrochemically synthesized from a solution of ABA and aniline with a mole ratio of 85:15. Its properties were studied by cyclic voltammetry. Relative conductivity measurements have been carried out showing that the copolymer's conductivity can be switched in the same way as that of poly(aniline) (PANI); they also indicate the presence of primary amino groups that allow a later derivatization. Ferrocene carboxaldehyde (FeCp2CHO) was coupled to the copolymer showing the presence of primary amino groups. This modified polymer also has switching conductivity properties. © 2001 Elsevier Science B.V. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_00220728_v504_n1_p120_Raffa
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic Biosensors
Molecular switches
o-Aminobenzylamine
Poly(aniline)
Amines
Biosensors
Copolymers
Cyclic voltammetry
Electric conductivity of solids
Electrochemistry
Synthesis (chemical)
Aminobenzylamine
Molecular switches
Polyaniline
Conductive plastics
spellingShingle Biosensors
Molecular switches
o-Aminobenzylamine
Poly(aniline)
Amines
Biosensors
Copolymers
Cyclic voltammetry
Electric conductivity of solids
Electrochemistry
Synthesis (chemical)
Aminobenzylamine
Molecular switches
Polyaniline
Conductive plastics
Raffa, D.L.
Battaglini, F.
Novel conducting polyaniline bearing functional groups
topic_facet Biosensors
Molecular switches
o-Aminobenzylamine
Poly(aniline)
Amines
Biosensors
Copolymers
Cyclic voltammetry
Electric conductivity of solids
Electrochemistry
Synthesis (chemical)
Aminobenzylamine
Molecular switches
Polyaniline
Conductive plastics
description A copolymer formed from aniline and o-aminobenzylamine (ABA) was electrochemically synthesized from a solution of ABA and aniline with a mole ratio of 85:15. Its properties were studied by cyclic voltammetry. Relative conductivity measurements have been carried out showing that the copolymer's conductivity can be switched in the same way as that of poly(aniline) (PANI); they also indicate the presence of primary amino groups that allow a later derivatization. Ferrocene carboxaldehyde (FeCp2CHO) was coupled to the copolymer showing the presence of primary amino groups. This modified polymer also has switching conductivity properties. © 2001 Elsevier Science B.V.
format JOUR
author Raffa, D.L.
Battaglini, F.
author_facet Raffa, D.L.
Battaglini, F.
author_sort Raffa, D.L.
title Novel conducting polyaniline bearing functional groups
title_short Novel conducting polyaniline bearing functional groups
title_full Novel conducting polyaniline bearing functional groups
title_fullStr Novel conducting polyaniline bearing functional groups
title_full_unstemmed Novel conducting polyaniline bearing functional groups
title_sort novel conducting polyaniline bearing functional groups
url http://hdl.handle.net/20.500.12110/paper_00220728_v504_n1_p120_Raffa
work_keys_str_mv AT raffadl novelconductingpolyanilinebearingfunctionalgroups
AT battaglinif novelconductingpolyanilinebearingfunctionalgroups
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