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Ultrafast photo-annealed carbon-coated SiO2 sphere electrodes for NO2 gas sensing

机译:Ultrafast照片退火的碳涂层SiO2球体电极用于No2气体传感

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摘要

There is great interest in carbon-based printed electronics as a promising technology to achieve lighter, thinner and flexible electronic devices at low-costs. Despite the surge of enthusiasm in this area, research advances in printed electronics are not yet able to realize diverse carbon structures yet. This is due to the limitations in conventional solution-based printing methods (e.g., inkjet printing, roll-to-roll, screen printing). Processes such as polymer phase-inversion offer one possibility but a much faster and efficient method should be devised for reliable production. Here, we demonstrate laser printing combined with intense pulsed-light (IPL) annealing as a novel and efficient technique which can form inter-connected carbon spheres electrode on flexible polymer substrate. Our observations show that the printed patterns from a laser printer consist of a solid-state polymer matrix with inorganic nanoparticles randomly embedded inside. Through ultrafast (5 ms) IPL treatment, core/shell type nanosphere arrays of carbon-coated SiO2 were successfully fabricated, which could be used as a functional platform for highly selective NO2 gas sensing. (C) 2020 Elsevier Ltd. All rights reserved.
机译:对基于碳的印刷电子产品具有很大的兴趣,作为以低成本实现更轻,更薄和灵活的电子设备的有希望的技术。尽管对该领域的热情激增,但印刷电子产品的研究进展尚未能够实现多样化的碳结构。这是由于常规溶液的印刷方法中的局限性(例如,喷墨印刷,卷到卷,丝网印刷)。诸如聚合物相位反转的过程提供一种可能性,但应设计得更快,更有效的方法以进行可靠的生产。这里,我们证明激光打印与强烈的脉冲光(IPL)退火为一种新颖的和有效的技术,其可以在柔性聚合物基板上形成连接在连接的碳球电极。我们的观察结果表明,来自激光打印机的印刷图案由具有无机纳米颗粒随机嵌入内部的固态聚合物基质组成。通过超快(5毫秒)IPL处理,成功制造了碳涂层SiO2的核/壳型纳米环阵列,可用作高选择性NO2气体感测的功能平台。 (c)2020 elestvier有限公司保留所有权利。

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