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Nanoporous kaolin – cellulose nanofibril composites for printed electronics

机译:纳米多孔高岭土–用于印刷电子产品的纤维素纳米原纤维复合材料

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摘要

Cellulose nano- and microfibrils (CNF/CMF) grades vary significantly based on the raw materials and process treatments used. In this study four different CNF/CMF grades were combined with kaolin clay pigment particles to form nanoporous composites. The attained composite properties like porosity, surface smoothness, mechanical properties and density properties depended strongly on the raw materials used. In general, higher kaolin content (~80 wt%) led to controllable shrinkage during drying, which resulted in improved dimensional stability of composites, compared to a lower kaolin content (~50 wt%). On the other hand, the use of a plasticizer and a high amount of CNF/CMF was essential to produce adequate elasticity for the composites. The performance of transistors when fabricated on the nanoporous composites was strongly dependent on the raw materials used. The formation of the semiconductor layer was affected by the porosity, roughness, hydrophobicity, polarity and absorption properties of the top-most layer at the composite. The developed natural fiber-based substrates may be applied to novel value-added applications in intelligent products, such as sensors and simple displays.
机译:纤维素纳米纤维和微纤维(CNF / CMF)的等级根据所使用的原材料和工艺处理而有很大差异。在这项研究中,将四种不同的CNF / CMF等级与高岭土粘土颜料颗粒结合形成纳米多孔复合材料。所获得的复合性能,例如孔隙率,表面光滑度,机械性能和密度性能,在很大程度上取决于所使用的原材料。通常,与较低的高岭土含量(〜50 wt%)相比,较高的高岭土含量(〜80 wt%)导致干燥期间可控制的收缩,从而导致复合材料的尺寸稳定性得到改善。另一方面,增塑剂和大量CNF / CMF的使用对于为复合材料产生足够的弹性至关重要。当在纳米多孔复合材料上制造晶体管时,其性能在很大程度上取决于所用的原材料。半导体层的形成受到复合材料最顶层的孔隙率,粗糙度,疏水性,极性和吸收特性的影响。所开发的基于天然纤维的基材可应用于智能产品中的新型增值应用,例如传感器和简单的显示器。

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