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Fabrication of Flexible and Conductive Graphene-Silver Films by Polymer Dispersion and Coating Method

机译:通过聚合物分散体制备柔性和导电石墨烯 - 银膜和涂布法

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We like to report a novel conductive film containing graphene-silver nanohybrids from the process of solution coating and annealing at low-temperature for melting silver nanoparticles (AgNPs) into interconnected Ag matrice on surface. The fabrication required the assistance of a home-made polymeric dispersant, poly(oxyethylene)-segmented imide (POE-imide), for homogenize the AgNPs and graphene in hybridized form. The intermediate dispersion of AgNPs at 10-25 nm diameter on the surface of 2D-graphene were characterized and subsequently subjected to solution coating into thin films. Under the annealing temperature as low as 160 °C, the films exhibited a high electric conductivity or low sheet resistance at 2.4×10~(-1) Ω/sq (equivalent to 7.9×10~4 S/cm). It is noteworthy that the significant point of low-temperature annealing at 160-170 °C that is attributed to the fast deterioration and degradation of the POE-imide organics kinetically before the AgNP coalescence and melting. Furthermore, the comparisons of using silicate clays and carbon nanotubes in replacing the 2D graphene for hybridizing Ag had revealed the different morphologies in Ag networks. The findings of using the polymeric dispersion for synthesizing nanohybrids may open up a new avenue for making films with integrated properties of flexibility, transparency and high conductivity for a host of electronic applications.
机译:我们希望从溶液涂布和在低温下的溶液涂层和退火的过程中报告一种新的导电膜,以将银纳米颗粒(AgNP)熔化成相互连接的Ag基质。该制造所需的辅助物质聚合物分散剂,聚(氧乙烯) - Seive的酰亚胺(PoE-aceide),用于将AgNP和石墨烯均化杂交形式均化。 AgNP在10-25nm直径下在2D-石墨烯表面上的中间分散体的表征,并随后对溶液涂布成薄膜。在退火温度低至160℃下,薄膜在2.4×10〜(-1)Ω/ sq(相当于7.9×10〜4 s / cm)的情况下表现出高电导率或低薄层电阻。值得注意的是,160-170°C的低温退火的显着点归因于PoE-Imide Organics的快速劣化和降解在AgNP聚结和熔化之前。此外,使用硅酸盐粘土和碳纳米管在更换2D石墨烯中进行杂交AG的比较揭示了AG网络中的不同形态。使用用于合成纳米胺的聚合物分散体的发现可以打开新的途径,用于制造具有集成性能的熔化性,透明度和高导电性的集成性能。

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