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Stretchable electrically conductive and high gas barrier nanocomposites

机译:可伸展的导电和高气体阻挡纳米复合材料

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摘要

An electrically conductive and stretchable polymer nanocomposite, with high gas barrier behavior, is achieved by depositing trilayers (TL) of polyethylene oxide (PEO), double-walled carbon nanotubes (DWNTs) stabilized with polyacrylic acid (PAA), and graphene oxide (GO) via a layer-by-layer assembly technique. A 40 TL thin film (approximate to 900 nm thick), comprised of this PEO/DWNT-PAA/GO sequence, exhibits an electrical conductivity of 1.3 S cm(-1) and a two orders of magnitude reduction in the oxygen transmission rate (OTR) relative to a 1 mm thick polyurethane (PU) rubber substrate. Low temperature thermal reduction of this system further improves the electrical conductivity to 67 S cm(-1) and this nanocoating remains crack-free up to 15% strain and maintains a 30 times lower OTR than uncoated polyurethane. This 15% stretch increases resistance by approximate to 30%. The electrical properties of this unique polymer nanocomposite remain constant after 1000 cycles of bending and twisting. These attributes are provided by the composite's constituents. Elastomeric mechanical properties come from the PEO/PAA layers, electrical conductivity comes from the conjugated network between carbon nanofillers, and the gas barrier is from the GO nanobrick wall structure. This synergistic combination of stretchability, conductivity, and high gas barrier is unprecedented, making this composite interesting for applications in electronics and packaging.
机译:通过沉积用聚丙烯酸(PAA)的聚环氧乙烷(PEO),双壁碳纳米管(DWNT)的三层玻璃(TL)和氧化石墨烯(GO )通过层逐层组装技术。由该PEO / DWNT-PAA / GO序列组成的40 TL薄膜(近似到900nm厚),其导电率为1.3s cm(-1),并且氧传输速率下降两个级别降低( OTR)相对于1mm厚的聚氨酯(PU)橡胶基材。该系统的低温热还原进一步提高了电导率至67s cm(-1),并且该纳米晶体保持不到15%的菌株,并保持比未涂覆的聚氨酯低30倍。该15%的拉伸通过近似增加到30%而增加。在1000个弯曲和扭曲后,这种独特的聚合物纳米复合材料的电性能保持恒定。这些属性由复合成分提供。弹性机械性能来自PEO / PAA层,电导率来自碳纳米填料之间的共轭网络,气体屏障是来自Go Nanobrick壁结构。这种可拉伸性,导电性和高气体屏障的这种协同组合是前所未有的,使得这种复合材料适用于电子和包装中的应用。

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