Department of Textile Engineering, Yazd Branch, Islamic Azad University, Yazd, Iran.
Carbohydr Polym. 2013 Jul 1;96(1):190-5. doi: 10.1016/j.carbpol.2013.03.052. Epub 2013 Mar 22.
In this work, design parameters were investigated for enhancing the conductivity of graphene-coated cotton textiles. Graphene oxide (GO) was immobilized on cotton fabric through a conventional "dip and dry" method. The GO-coated fabrics were then immersed in an aqueous solution of reducing agent, which converted the GO into graphene. The effect of various parameters such as type of reducing agent (NaBH4, N2H4, C6H8O6, Na2S2O4 and NaOH) and its concentration, reduction time and number of coating process on conductivity of the fabrics was studied. The mechanical performance of the fabrics was also investigated. The results showed that the best conductivity and mechanical performance were obtained using Na2S2O4 as a reducing agent. The reaction time of 30 min at 95°C was enough for complete reduction of the GO. Electrical conductivity increased by approximately three orders of magnitude with the increase in the number of coating process from 1 to 20 cycles.
在这项工作中,研究了设计参数以提高涂覆石墨烯的棉纺织品的导电性。通过传统的“浸渍和干燥”方法将氧化石墨烯(GO)固定在棉织物上。然后,将GO 涂层的织物浸入还原剂的水溶液中,将 GO 还原成石墨烯。研究了各种参数(还原剂的类型(NaBH4、N2H4、C6H8O6、Na2S2O4 和 NaOH)及其浓度、还原时间和涂层次数)对织物导电性的影响。还研究了织物的机械性能。结果表明,使用 Na2S2O4 作为还原剂可以获得最佳的导电性和机械性能。在 95°C 下反应 30 分钟足以完全还原 GO。随着涂层次数从 1 次增加到 20 次,电导率增加了约三个数量级。