Elaboration of a Conductive Textile by Coating for Clothes Equipped with Fourth-Generation Photovoltaic Cells

H. Jaouani, D. Saifaoui, M. Dalal
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Abstract

Conducting polymer coated in textiles possess a wide range of electrical properties. The surface resistivity is influenced by concentrations of the reactants, thickness of the coating, nature of the substrate surface, extent of penetration of the polymer into the textile structure and the strength of the binding of the coating to the textile surface. Low resistivity in fabric results from highly doped thicker coatings that penetrate well into the textile structure thus enabling good electrical contact between fibers. In this study, we had chosen copper as conductor polymer for coating. The electrical conductivity is influenced by the thickness of coating paste, the nature of the substrate surface. The thickness of the paste and the concentration of the copper were studied in this paper. Furthermore, the electrical surface resistance decreased from 68 MΩ to 8 MΩ with decreasing in coating thickness. However, the thickness of coated fabric is very important factor to determine conductivity and application of textile. In addition, we had noticed that the airflow is affected by the coating thickness which the penetration of the airflow differs from the lower thickness to the higher one. This study confirm that we can use coating woven fabric to develop a textile substrate responding to characteristics such as electrical resistance, drapability, air permeability and tensile strength, which are particularly important to be used as a support for flexible photovoltaic cells in clothes.
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第四代光伏电池服装用涂层制备导电织物
涂覆在纺织品上的导电聚合物具有广泛的电性能。表面电阻率受反应物浓度、涂层厚度、基材表面性质、聚合物对纺织品结构的渗透程度以及涂层与纺织品表面的结合强度的影响。织物的低电阻率源于高度掺杂的较厚涂层,这些涂层可以很好地渗透到纺织结构中,从而使纤维之间具有良好的电接触。在本研究中,我们选择了铜作为导体聚合物进行涂层。电导率受涂膏厚度、基材表面性质等因素的影响。对膏体的厚度和铜的浓度进行了研究。随着涂层厚度的减小,表面电阻从68 MΩ降至8 MΩ。然而,涂层织物的厚度是决定织物导电性和应用的重要因素。此外,我们还注意到气流受涂层厚度的影响,涂层厚度越低,气流的穿透力越大。这项研究证实,我们可以使用涂层机织织物来开发一种响应电阻、悬垂性、透气性和拉伸强度等特性的纺织基材,这些特性对于用作衣服中柔性光伏电池的支撑尤为重要。
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