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Rheology of cellulose nanofibrils/silver nanowires suspension for the production of transparent and conductive electrodes by screen printing

机译:纤维素纳米原纤维/银纳米线悬浮液的流变学,用于通过丝网印刷生产透明和导电电极

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With the aim of processing silver nanowires-based electrodes using screen printing process, this study proposes to evaluate the suitability of cellulose nanofibrils (CNF) as a thickening agent for providing a high viscosity silver nanowires screen printing ink. Rheology of CNF suspension has been specifically investigated according to screen printing process requirements using both rotational and oscillating rheology. It has been found that CNF indeed act as a thickener and stabilizer for the silver nanowires suspension. However, the solid dominant visco-elastic behavior of the CNF suspension was not suitable for screen printing and leads to defects within the printed film. CNF visco-elastic properties were modified by adding hydroxypropylmethyl cellulose ( HPMC) to the suspension. Homogeneous transparent conductive layers have been obtained when using CNF-HPMC as a matrix for silver nanowires. The screen printed layers were characterized and performances of R-sh = 12 +/- 5 Omega rectangle(-1) and T%(500nm) = 74,8% were achieved without any additional post-treatment to the film. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了使用丝网印刷工艺处理基于银纳米线的电极,本研究建议评估纤维素纳米原纤维(CNF)作为增稠剂用于提供高粘度银纳米线丝网印刷油墨的适用性。 CNF悬浮液的流变学已根据丝网印刷工艺要求同时使用旋转和振荡流变学进行了专门研究。已经发现CNF确实充当银纳米线悬浮液的增稠剂和稳定剂。但是,CNF悬浮液的固体占主导地位的粘弹性行为不适用于丝网印刷,并导致印刷薄膜内部出现缺陷。通过向悬浮液中添加羟丙基甲基纤维素(HPMC)来改变CNF的粘弹性。当使用CNF-HPMC作为银纳米线的基质时,已经获得了均质的透明导电层。对丝网印刷层进行了表征,无需对膜进行任何额外的后处理即可获得R-sh = 12 +/- 5Ω矩形(-1)和T%(500nm)= 74.8%的性能。 (C)2016 Elsevier B.V.保留所有权利。

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