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Electromechanical reliability of a flexible metal-grid transparent electrode prepared by electrohydrodynamic (EHD) jet printing

机译:通过电动流体动力学(EHD)喷射印刷制备的柔性金属网格透明电极的机电可靠性

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In this study, we investigated the electrical and mechanical characteristics of an Ag-grid flexible transparent electrode (FTE) as a flexible and even foldable transparent electrode for flexible electronic devices. The Ag-grid FTE was fabricated on a polyethylene terephthalate substrate using the electrohydrodynamic (EHD) jet printing process. We achieved a fine pattern of a line width of 4.6 mu m. The Ag-grid FTE exhibited the sheet resistances of similar to 4 Omega/sq. and optical transmittance of around 80% with a pitch of 150 mu m. We also used the carbon treated black metal-nanoparticles to lower the haze up to 1%. The effects of the sintering temperature on the microstructure and sheet resistance were investigated. From the sintering temperature of 150 degrees C, a stable necking between nano-particles began to form, and the sheet resistance substantially decreased. The mechanical flexibility and durability of the Ag-grid FTEs were investigated via bending, stretching, dynamic/static fatigue tests, and adhesion tests. The outward bending test results showed that the Ag-grid FTE can be bent up to 3 mm without failure of the electrode. The stretching test indicated that the Ag-grid Ells can be stretched to a tensile strain of 9%; however, the Ag-grid was slightly vulnerable at the extreme bending radius in the bending cyclic fatigue tests-due to severe strain accumulation. The Ag-grid FTEs exhibited a very stable static bending fatigue property during the 1000 h test as well as an excellent adhesion property. These results indicate that the Ag-grid FTE is a promising electrode scheme for bendable or foldable electronic devices. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,我们研究了Ag网格柔性透明电极(FTE)作为柔性电子设备的柔性甚至可折叠透明电极的电气和机械特性。 Aggrid FTE使用电动流体力学(EHD)喷射印刷工艺在聚对苯二甲酸乙二醇酯基板上制造。我们实现了线宽为4.6微米的精细图案。 Ag-grid FTE的薄层电阻类似于4 Omega / sq。间距为150μm,透光率约为80%。我们还使用碳处理的黑色金属纳米颗粒将雾度降低至1%。研究了烧结温度对显微组织和薄层电阻的影响。从150℃的烧结温度开始,纳米颗粒之间开始形成稳定的颈缩,并且薄层电阻显着降低。通过弯曲,拉伸,动态/静态疲劳测试和附着力测试研究了Ag-grid FTE的机械柔韧性和耐久性。向外弯曲测试结果表明,Ag-grid FTE可以弯曲至3 mm,而不会导致电极损坏。拉伸试验表明,Ag-grid Ells可以拉伸至9%的拉伸应变;但是,由于剧烈的应变积累,在弯曲循环疲劳试验中,在极端的弯曲半径处,Ag网格稍有脆弱。 Ag-grid FTE在1000 h测试中表现出非常稳定的静态弯曲疲劳性能以及出色的粘合性能。这些结果表明,Ag-grid FTE是用于可弯曲或可折叠电子设备的有前途的电极方案。 (C)2016 Elsevier Ltd.保留所有权利。

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