Electrical Conductivity and Activation Energy of Thin Film Polyaniline Doped with HCI

<p>Abstract<br /> Galvanostapc method of electropolymerization at 3 mA was employed to synthesize polyaniline doped with HCI by varying dopan concentration. The thin films polyaniline were spincOaled onto Cu substral on PCB from polyaniline powder in NMP solution. Spin coaJedfilms of pol...

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Main Author: , Mariana B.Malino
Format: Article
Published: [Yogyakarta] : Institut Teknologi Bandung 2009
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author , Mariana B.Malino
author_facet , Mariana B.Malino
author_sort , Mariana B.Malino
collection UGM
description <p>Abstract<br /> Galvanostapc method of electropolymerization at 3 mA was employed to synthesize polyaniline doped with HCI by varying dopan concentration. The thin films polyaniline were spincOaled onto Cu substral on PCB from polyaniline powder in NMP solution. Spin coaJedfilms of polyani/ine are evaluated for their conductivity properties and activation energy by measuring the I-V characteristic at various temperature in the range 302-382K. The highest value at room temperature of electrical conductivity obtainedis in the case of polyaniline doped 1M HCI. In order to determine the activation energy. we employed plots Arrehenius which give activation energy about 0.16 e V. From I-V characteristic we&nbsp
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publisher [Yogyakarta] : Institut Teknologi Bandung
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spelling oai:generic.eprints.org:948362014-11-28T07:35:36Z https://repository.ugm.ac.id/94836/ Electrical Conductivity and Activation Energy of Thin Film Polyaniline Doped with HCI , Mariana B.Malino <p>Abstract<br /> Galvanostapc method of electropolymerization at 3 mA was employed to synthesize polyaniline doped with HCI by varying dopan concentration. The thin films polyaniline were spincOaled onto Cu substral on PCB from polyaniline powder in NMP solution. Spin coaJedfilms of polyani/ine are evaluated for their conductivity properties and activation energy by measuring the I-V characteristic at various temperature in the range 302-382K. The highest value at room temperature of electrical conductivity obtainedis in the case of polyaniline doped 1M HCI. In order to determine the activation energy. we employed plots Arrehenius which give activation energy about 0.16 e V. From I-V characteristic we&nbsp [Yogyakarta] : Institut Teknologi Bandung 2009 Article NonPeerReviewed , Mariana B.Malino (2009) Electrical Conductivity and Activation Energy of Thin Film Polyaniline Doped with HCI. text. http://repository.ugm.ac.id/digitasi/index.php?module=cari_hasil_full&idbuku=2628
spellingShingle , Mariana B.Malino
Electrical Conductivity and Activation Energy of Thin Film Polyaniline Doped with HCI
title Electrical Conductivity and Activation Energy of Thin Film Polyaniline Doped with HCI
title_full Electrical Conductivity and Activation Energy of Thin Film Polyaniline Doped with HCI
title_fullStr Electrical Conductivity and Activation Energy of Thin Film Polyaniline Doped with HCI
title_full_unstemmed Electrical Conductivity and Activation Energy of Thin Film Polyaniline Doped with HCI
title_short Electrical Conductivity and Activation Energy of Thin Film Polyaniline Doped with HCI
title_sort electrical conductivity and activation energy of thin film polyaniline doped with hci
work_keys_str_mv AT marianabmalino electricalconductivityandactivationenergyofthinfilmpolyanilinedopedwithhci