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Solution-processed assembly of ultrathin transparent conductive cellulose nanopaper embedding AgNWs

机译:Solution-processed组装的超薄透明导电纤维素nanopaper

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摘要

Natural biomass based cellulose nanopaper is becoming a promising transparent substrate to supersede traditional petroleum based polymer films in realizing future flexible paper-electronics. Here, ultrathin, highly transparent, outstanding conductive hybrid nanopaper with excellent mechanical flexibility was synthesized by the assembly of nanofibrillated cellulose (NFC) and silver nanowires (AgNWs) using a pressured extrusion paper-making technique. The hybrid nanopaper with a thickness of 4.5 mu m has a good combination of transparent conductive performance and mechanical stability using bamboo/hemp NFC and AgNWs cross-linked by hydroxypropylmethyl cellulose (HPMC). The heterogeneous fibrous structure of BNFC/HNFC/AgNWs endows a uniform distribution and an enhanced forward light scattering, resulting in high electrical conductivity and optical transmittance. The hybrid nanopaper with an optimal weight ratio of BNFC/HNFC to AgNWs shows outstanding synergistic properties with a transmittance of 86.41% at 550 nm and a sheet resistance of 1.90 ohm sq(-1), equal to the electronic conductivity, which is about 500 S cm(-1). The BNFC/HNFC/AgNW hybrid nanopaper maintains a stable electrical conductivity after the peeling test and bending at 135 degrees for 1000 cycles, indicating remarkably strong adhesion and mechanical flexibility. Of importance here is that the high-performance and low-cost hybrid nanopaper shows promising potential for electronics application in solar cells, flexible displays and other high-technology products.
机译:基于天然生物质纤维素nanopaper成为一个有前途的透明衬底取代传统的石油为基础的聚合物电影在未来实现灵活paper-electronics。透明的,优秀的导电混合nanopaper具有优良的机械的灵活性组装合成的nanofibrillated纤维素(NFC)和银纳米线(AgNWs)使用压力挤压造纸技术。厚度为4.5μm的有很好的结合透明的导电性能和机械使用竹/麻NFC和AgNWs稳定由hydroxypropylmethyl纤维素交联(HPMC)。BNFC / HNFC AgNWs赋予一个均匀分布一个增强的光散射,产生的在高导电性和光学透光率。的最佳重量比BNFC / HNFC AgNWs显示优秀的协同与属性在550纳米和一张透光率86.41%1.90欧姆的电阻平方(1),等于电子电导率,大概是500年代厘米(1)。保持一个稳定的导电性剥离试验和弯曲135度1000个周期,表示非常强劲附着力和机械的灵活性。这里是高性能和重要性低成本混合nanopaper给出承诺在太阳能电子产品应用的潜力细胞,柔性显示等高科技产品。

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