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首页> 外文期刊>ACS applied materials & interfaces >Ultrathin Plasmonic Optical/Thermal Barrier: Flashlight-Sintered Copper Electrodes Compatible with Polyethylene Terephthalate Plastic Substrates
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Ultrathin Plasmonic Optical/Thermal Barrier: Flashlight-Sintered Copper Electrodes Compatible with Polyethylene Terephthalate Plastic Substrates

机译:超强级光/热屏蔽:手电筒烧结铜电极与聚对苯二甲酸乙二醇酯塑料基材相容

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摘要

In recent years, highly conductive, printable electrodes have received tremendous attention in various research fields as the most important constituent components for large-area, low-cost electronics. In terms of ari indispensable sintering process for generating electrodes from printable metallic nanomaterials, a flashlight-based sintering technique has been regarded as a viable approach for continuous roll-to roll processes. In this paper, we report cost-effective, printable Cu electrodes that can be applied to vulnerable polyethylene terephthalate (PET) substrates, by incorporating a heretofore unrecognized ultrathin plasmonic thermal/optical barrier, which is composed of a 30 nm thick Ag nanoparticle (NP) layer. The different plasmonic behaviors during a flashlight-sintering process are investigated for both Ag and Cu NPs, based on a combined interpretation of the experimental results and theoretical calculations. It is demonstrated that by a continuous printing process and a continuous flashlight-sintering process, the Cu electrodes are formed successfully on large PET substrates, with a sheet resistance of 0.24 Omega/sq and a resistivity of 22.6 mu Omega.cm.
机译:近年来,高导电性,可打印电极在各种研究领域得到了极大的关注,作为大面积,低成本电子设备的最重要的组成部分。就来自可印刷金属纳米材料产生电极的ARI不可抗性的烧结过程而言,基于手电筒的烧结技术被认为是连续卷辊工艺的可行方法。在本文中,我们通过掺入迄今为止无法识别的超前素热/光学屏障来报告可持续有效的可印刷Cu电极,其可应用于易受伤害的聚对苯二甲酸乙二醇酯(PET)底物,其由30nm厚Ag纳米粒子(NP ) 层。基于实验结果和理论计算的组合解释,研究了用于AG和Cu NPS的手电筒烧结过程中的不同等离子体行为。证明,通过连续印刷工艺和连续的手电筒烧结过程,Cu电极在大的PET基板上成功形成,其片性为0.24ω/ Sq和22.6μmωcm的电阻率。

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