The Use of Le Bail Method to Analyze the Semicrystalline Pattern of a Nanocomposite Based on Polyaniline Emeraldine-Salt Form andα-Al2O3

Author:

Sanches Edgar A.1,Carolino Adriano de S.2,Santos Amanda L. dos3,Fernandes Edson G. R.4,Trichês Daniela M.1,Mascarenhas Yvonne P.4

Affiliation:

1. Programa de Pós-Graduação em Ciência e Engenharia de Materiais (PPGCEM), Programa de Pós-Graduação em Física (PPGFIS), Universidade Federal do Amazonas (UFAM), 69077-000 Manaus, AM, Brazil

2. Departamento de Física (DF), Universidade Federal do Amazonas (UFAM), 69077-000 Manaus, AM, Brazil

3. Nanomed Inovação em Nanotecnologia, 13560-460 São Carlos, SP, Brazil

4. Instituto de Física de São Carlos (IFSC), Universidade de São Paulo (USP), 13566-590 São Carlos, SP, Brazil

Abstract

Ceramic nanocomposites constituted by a matrix ofα-Al2O3microparticles reinforced by polyaniline emeraldine-salt form (PANI-ES) nanoparticles were prepared byin situpolymerization and characterized structural and morphologically. Peaks related to both materials were observed through XRD technique: PANI-ES presented peaks at2θ= 8.9, 14.9, 20.8, 25.3, 27.1, and 30.0° and inα-Al2O3phase peaks were found at2θ= 25.6, 35.2, 37.9, 43.5, 52.6, 57.6, and 68.1°. Nanocomposite crystallinity percentage was estimated around 70%. SEM showed a polymerization of PANI-ES over alumina plates. By Le Bail method it was observed that PANI-ES andα-Al2O3have crystallite average size around, respectively, 41 and 250 Å. By FTIR analysis characteristic absorption bands of both materials were identified. Additional bands indicating new chemical bonds were not observed, suggesting that nanocomposite was formed by physical deposition. Nanocomposite DC electrical conductivity was found around 0.24 S/cm (against1.84×10-4 S/cm for pure PANI-ES), showing an increase of about 1,300 times compared to the pure PANI-ES at room temperature. Thus, this paper showed that both materials have kept its original structural characteristics and exhibited high electrical conductivity when combined in nanocomposite form.

Funder

Fundação de Amparo à Pesquisa do Estado do Amazonas

Publisher

Hindawi Limited

Subject

General Engineering,General Materials Science

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