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Multifunctional surface modification of silk fabric via graphene oxide repeatedly coating and chemical reduction method

机译:氧化石墨烯多次涂覆对蚕丝织物进行多功能表面改性及化学还原方法

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Multifunctional silk fabrics with electrical conductive, anti-ultraviolet and water repellent were successfully prepared by surface modification with graphene oxide (GO). The yellow-brown GO deposited on the surface of silk fabric was converted into graphitic black reduced graphene (RGO) by sodium hydrosulfite. The surface properties of silk fabrics were changed by repeatedly RGO coating process, which have been proved by SEM and XPS. The SEM results showed that the RGO sheets were successive form a continuously thin film on the surface of silk fabrics, and the deposition of GO or RGO also can be proved by XPS. The electrical conductivity was tested by electrical surface resistance value of the silk fabric, the surface resistance decreased with increasing of RGO surface modification times, and a low surface resistance value reached to 3.241 K ohm cm(-1) after 9 times of modification, indicating the silk obtained excellent conductivity. The UPF value of one time GO modification silk fabric (silk-1RGO) was enhanced significantly to 24.45 in comparison to 10.40 of original silk. The contact angle of RGO coating silk samples was all above of 120. The durability of RGO coated silk fabrics was tested by laundering. The electrical surface resistance of silk-4RGO (65.74 K ohm cm(-1)), silk-6RGO (15.541K ohm cm(-1)) and silk-8RGO (3.86 K ohm cm(-1)) fabrics was up to 86.82, 22.30 and 6.57 K ohm cm(-1) after 10 times of standard washing, respectively. The UPF value, contact angle and color differences of RGO modified silk fabric slightly changed before and after 10 times of standard washing. Therefore, the washing fastness of electric conduction, anti-ultraviolet and water repellent multifunctional silk fabrics was excellent. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过氧化石墨烯(GO)的表面改性,成功地制备了具有导电,抗紫外线和拒水性能的多功能真丝织物。亚硫酸氢钠将沉积在丝织物表面的黄棕色GO转变为石墨黑还原石墨烯(RGO)。真丝织物的表面性能通过反复的RGO涂层工艺进行了改变,这已通过SEM和XPS证明。 SEM结果表明,RGO片材在丝织物表面连续形成连续的薄膜,GO或RGO的沉积也可以通过XPS证明。用真丝织物的表面电阻值测试电导率,表面电阻随着RGO表面改性时间的增加而降低,经过9次改性后低表面电阻值达到3.241 K ohm cm(-1),表明丝绸获得了优异的导电性。与原始蚕丝的10.40相比,一次性GO改性蚕丝织物(silk-1RGO)的UPF值显着提高至24.45。 RGO涂层丝织物样品的接触角均为120度以上。RGO涂层丝织物的耐久性通过洗涤进行测试。真丝4RGO(65.74 K ohm cm(-1)),真丝6RGO(15.541K ohm cm(-1))和真丝8RGO(3.86 K ohm cm(-1))的表面电阻高达标准清洗10次后分别达到86.82、22.30和6.57 K ohm cm(-1)。 RGO修饰的真丝织物的UPF值,接触角和色差在标准洗涤10次前后均略有变化。因此,导电,抗紫外线和疏水多功能丝绸织物的耐洗牢度是极好的。 (C)2017 Elsevier B.V.保留所有权利。

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