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Butyl Rubber Nanocomposites with Monolayer MoS2 Additives: Structural Characteristics Enhanced Mechanical and Gas Barrier Properties

机译:具有单层MoS2添加剂的丁基橡胶纳米复合材料:结构特性增强的机械性能和阻气性

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摘要

Emerging two-dimensional (2D) materialsm, such as molybdenum disulfide (MoS2), offer opportunities to tailor the mechanical and gas barrier properties of polymeric materials. In this study, MoS2 was exfoliated to monolayers by modification with ethanethiol and nonanethiol. The thicknesses of resulting MoS2 monolayers were 0.7 nm for MoS2-ethanethiol and 1.1 nm for MoS2-nonanethiol. MoS2 monolayers were added to chlorobutyl rubber to prepare MoS2-butyl rubber nanocomposites at concentrations of 0.5, 1, 3, and 5 phr. The tensile stress showed a maximum enhancement of about 30.7% for MoS2-ethanethiol-butyl rubber and 34.8% for MoS2-nonanethiol-butyl rubber when compared to pure chlorobutyl rubber. In addition, the gas barrier properties were increased by 53.5% in MoS2-ethanethiol-butyl rubber and 49.6% in MoS2-nonanethiol-butyl rubber. MoS2 nanosheets thus enhanced the mechanical and gas barrier properties of chlorobutyl rubber. The nanocomposites that are presented here may be used to manufacture pharmaceutical stoppers with high mechanical and gas barrier properties.
机译:新兴的二维(2D)材料,例如二硫化钼(MoS2),为定制聚合材料的机械和气体阻隔性能提供了机会。在这项研究中,通过用乙硫醇和壬硫醇修饰将MoS2剥离为单层。对于MoS2-乙硫醇,所得MoS2单层的厚度为0.7 nm,对于MoS2-壬烷硫醇,厚度为1.1 nm。将MoS2单层添加到氯丁基橡胶中,以0.5、1、3和5 phr的浓度制备MoS2-丁基橡胶纳米复合材料。与纯氯丁基橡胶相比,MoS2-乙硫醇丁基橡胶的拉伸应力最大提高了约30.7%,MoS2-壬烷硫醇丁基橡胶的拉伸应力达到了34.8%。另外,MoS2-乙硫醇丁基橡胶的阻气性提高了53.5%,而MoS2-壬烷硫醇丁基橡胶的阻气性提高了49.6%。因此,MoS2纳米片增强了氯丁基橡胶的机械和气体阻隔性能。本文介绍的纳米复合材料可用于制造具有高机械和气体阻隔性能的药物塞。

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