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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Fabrication of a flexible and conductive lyocell fabric decorated with graphene nanosheets as a stable electrode material
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Fabrication of a flexible and conductive lyocell fabric decorated with graphene nanosheets as a stable electrode material

机译:用石墨烯纳米片作为稳定电极材料装饰的柔性导电莱赛尔织物的制造

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Textile electrodes are highly desirable for wearable electronics as they offer light-weight, flexibility, cost effectiveness and ease of fabrication. Here, we propose the use of lyocell fabric as a flexible textile electrode because of its inherently super hydrophilic characteristics and increased moisture uptake. A highly concentrated colloidal solution of graphene oxide nanosheets (GONs) was coated on to lyocell fabric and was then reduced in to graphene nanosheets (GNs) using facile chemical reduction method. The proposed textile electrode has a very high surface conductivity with a very low value of surface resistance of only 40 Omega sq(-1), importantly without use of any binding or adhesive material in the processing step. Atomic force spectroscopy (AFM) and Transmission electron microscopy (TEM) were conducted to study the topographical properties and sheet exfoliation of prepared GONs. The surface morphology, structural characterization and thermal stability of the fabricated textile electrode were studied by field emission scanning electron microscopy (FE-SEM), Fourier transform infrared spectroscopy (FT-IR), X ray photon spectroscopy (XPS), Raman spectroscopy, Wide angle X ray diffraction spectroscopy (WAXD) and Thermogravimetric analysis (TGA) respectively. These results suggest that the GONs is effectively adhered on to the lyocell fabric and the conversion of GONs in to GNs by chemical reduction has no adverse effect on the crystalline structure of textile substrate. The prepared graphene coated conductive lyocell fabric was found stable in water and electrolyte solution and it maintained nearly same surface electrical conductivity at various bending angles. The electrical resistance results suggest that this lyocell based textile electrode (L-GNs) is a promising candidate for flexible and wearable electronics and energy harvesting devices. (C) 2016 Elsevier Ltd. All rights reserved.
机译:纺织电极对于可穿戴电子设备是非常需要的,因为它们具有重量轻,柔韧性,成本效益和易于制造的特点。在这里,由于其固有的超亲水特性和增加的吸湿性,我们建议将莱赛尔织物用作柔性织物电极。将高浓度的氧化石墨烯纳米片(GONs)的胶体溶液涂覆到莱赛尔织物上,然后使用简便的化学还原方法将其还原为石墨烯纳米片(GNs)。所提出的纺织电极具有非常高的表面电导率和非常低的仅40 Omega sq(-1)的表面电阻值,重要的是在加工步骤中不使用任何粘合或粘合材料。进行了原子力光谱(AFM)和透射电子显微镜(TEM)研究制备的GON的形貌特性和片状剥落。通过场发射扫描电子显微镜(FE-SEM),傅立叶变换红外光谱(FT-IR),X射线光子光谱(XPS),拉曼光谱,宽光谱研究了所制备的纺织电极的表面形态,结构特征和热稳定性。 X射线衍射光谱(WAXD)和热重分析(TGA)。这些结果表明,GONs有效地粘附在莱赛尔织物上,并且通过化学还原将GONs转化为GNs对纺织品基质的晶体结构没有不利影响。发现制备的石墨烯涂覆的导电莱赛尔织物在水和电解质溶液中稳定,并且在各种弯曲角度下保持几乎相同的表面电导率。电阻结果表明,这种基于莱赛尔的纺织电极(L-GNs)是柔性和可穿戴电子设备和能量收集设备的有希望的候选者。 (C)2016 Elsevier Ltd.保留所有权利。

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