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Highly conductive carbon-based aqueous inks toward electroluminescent devices, printed capacitive sensors and flexible wearable electronics

机译:面向电致发光器件,印刷电容传感器和柔性可穿戴电子设备的高导电性碳基水性油墨

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Carbon-based conductive inks are one of the most important materials in the field of printing electronics. However, most carbon-based conductive inks with small electrical resistance are expensive, such as graphene. It limits the commercial use of carbon inks in the fields of flexible electronics and printed electronics. Here, we propose a low-cost and environmentally friendly formula based on dihydroxyphenyl-functionalized multi-walled carbon nanotubes (MWNT-f-OH)/carbon black/graphite as conductive fillers and waterborne acrylic resins as binders for preparing highly conductive carbon-based aqueous inks (HCCA-inks). Our study showed that when the mass fraction of carbon black, graphite and MWNT-f-OH was 3.0%, 10.2% and 4.1%, respectively, on a thickness of 40 μm, optimal conductivity (sheet resistance up to 29 Ω sq ~(?1) ) was achieved, and the printed HCCA-inks on a paper could withstand extremely high folding cycles (>2000 cycles) while the resistance value of the flexible circuit only increased by 11%. The carbon-based aqueous inks showed high electrical conductivity and excellent mechanical stability, which makes it possible for them to be used as flexible wearable electronics, electroluminescent (EL) devices and printed capacitive sensors.
机译:碳基导电油墨是印刷电子领域最重要的材料之一。但是,大多数具有较小电阻的碳基导电油墨都很昂贵,例如石墨烯。它限制了碳墨水在柔性电子和印刷电子领域的商业用途。在这里,我们提出一种低成本和环保的配方,该配方以二羟基苯基官能化的多壁碳纳米管(MWNT-f-OH)/炭黑/石墨为导电填料,水性丙烯酸树脂为粘结剂来制备高导电性碳基水性油墨(HCCA油墨)。我们的研究表明,当炭黑,石墨和MWNT-f-OH的质量分数分别为40%时,厚度分别为3.0%,10.2%和4.1%时,最佳电导率(薄层电阻高达29Ωsq〜(达到α1)),并且在纸上印刷的HCCA油墨可以经受极高的折叠循环(> 2000次循环),而柔性电路的电阻值仅增加11%。碳基水性墨水显示出高导电性和出色的机械稳定性,这使其有可能用作柔性可穿戴电子设备,电致发光(EL)器件和印刷电容式传感器。

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