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Electrostatic powder coatings of pristine graphene: A new approach for coating of granular and fibril substrates

机译:原始石墨烯的静电粉末涂料:涂覆颗粒和原纤维基材的新方法

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The use of pristine graphene (pG) based on solution processed coating technologies is often limited by their poor dispersibility in water and organic solvents which prevents to achieve the best performing properties of pG in coating applications. To address these limitations, we developed a dispersant-free coating approach of pG based on their intrinsic solid-lubricity and interlayer electrostatic interactions. The "rotating drum" method was established to provide suitable conditions for electrostatic deposition of pG-powder which is demonstrated on two model substrates with granular and fibril morphologies (urea and acrylic fibers) to improve their physical and electrical properties. The results showed that the pG coating enables to minimize moisture induced caking tendency of commercial urea prills at a relative humidity (RH) of 85% (higher than critical humidity) exhibiting greater moisture rejection ability (similar to 2 times higher than uncoated urea) and to improve their anti-abrasive properties. The pG-powder coating applied on nonconductive acrylic fibers provides a stable conductive layer (similar to 0.8 +/- 0.1 k Omega/sq) which made them suitable for using in wearable electronics, sensors and electromagnetic interference (EMI) shielding. The developed coating method for pG-powder based on "rotating drum" is generic, simple, eco-friendly, low-cost, and scalable for broad range of coating applications. (C) 2018 Elsevier B.V. All rights reserved.
机译:基于溶液加工的涂层技术的原始石墨烯(pG)的使用通常受到限制,因为它们在水和有机溶剂中的分散性较差,这妨碍了在涂层应用中实现pG的最佳性能。为了解决这些限制,我们基于其固有的固体润滑性和层间静电相互作用,开发了无分散剂的pG涂层方法。建立“旋转鼓”方法是为了为pG粉的静电沉积提供合适的条件,这在具有颗粒状和原纤维形态(尿素和丙烯酸纤维)的两种模型基材上得到了证明,以改善其物理和电性能。结果表明,pG涂层能够使商业尿素小球在相对湿度(RH)为85%(高于临界湿度)时产生的水分引起的结块趋势降至最低,表现出更高的排湿能力(约为未涂层尿素的2倍),并且改善其抗磨性能。应用于非导电丙烯酸纤维的pG粉末涂层可提供稳定的导电层(类似于0.8 +/- 0.1 k Omega / sq),使其适合用于可穿戴电子设备,传感器和电磁干扰(EMI)屏蔽。基于“转鼓”开发的pG粉末涂层方法是通用,简单,环保,低成本且可扩展的,适用于广泛的涂层应用。 (C)2018 Elsevier B.V.保留所有权利。

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