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Conductivity and structure of a polyamide/silver iodide nanocomposite
Authors:Yoshie Fujimori  Yasuo Gotoh  Akio Kawaguchi  Yutaka Ohkoshi  Masanobu Nagura
Affiliation:1. Faculty of Textile Science and Technology, Shinshu University 3-15-1 Tokida, Ueda, Nagano 386-8567, Japan;2. Research Reactor Institute, Kyoto University, Kumatori, Osaka 590-0494, Japan
Abstract:In this study, the structure and properties of an organic–inorganic composite material prepared from nylon 6 doped with fine particles of silver iodide (AgI) were examined. The preparation of the composite involved the complexation of nylon 6 with polyiodide ions such as Iurn:x-wiley:00218995:media:APP27601:tex2gif-stack-1 and Iurn:x-wiley:00218995:media:APP27601:tex2gif-stack-2 by immersion in an iodine/potassium iodide (I2–KI) aqueous solution followed by reaction in a silver nitrate (AgNO3) aqueous solution; this resulted in the in situ formation of β-AgI fine particles within the nylon 6 matrix. The AgI content formed in the composite was dependent on the immersion temperatures of the I2–KI and AgNO3 solutions. Lower solution temperatures resulted in larger amounts of AgI in the composite. This method readily provided a composite with a high content of AgI in nylon 6 and a conductivity of approximately 10−5 Ω−1 cm−1. In a uniaxially oriented nylon 6 matrix, AgI particles precipitated with anisotropic shape, which was caused by the orientation of the precursor polyiodide ions. The structure of the oriented composite provided the anisotropic conductivity. Additionally, the composite exhibited high antibacterial properties. The procedure used in this study is considered a unique method for the preparation of organic–inorganic composites. © 2008 Wiley Periodicals, Inc. J Appl Polym Sci, 2008
Keywords:inorganic materials  nanocomposites  nylon
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