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Titanium hydride nanoparticles and nanoinks for aerosol jet printed electronics

机译:用于气溶胶喷印电子产品的氢化钛纳米颗粒和纳米油墨

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Conductive inks commonly rely on oxidation-resistant metallic nanoparticles such as gold, silver, copper, and nickel. The criterion of air stability limits the scope of material properties attainable in printed electronic devices. Here we present an alternative approach based on air-stable nanoscale metal hydrides. Conductive patterns based on titanium hydride (TiH2) nanoinks were successfully printed on polyimide under ambient atmosphere and cured using intense pulsed light processing. Nanoparticles of TiH2 were generated by heating TiH2 powder in octylamine followed by wet ball milling, yielding <100 nm platelets. The addition of a suitable polymer dispersant during ball milling yielded stable colloidal dispersions suitable for liquid-phase processing. Aerosol jet printing of the resultant TiH2 nanoinks was demonstrated on glass and polyimide substrates, with a resolution as fine as 20 μm. Following intense pulsed light curing, samples on polyimide were found to exhibit a sintered, porous morphology with an electrical sheet resistance of ∼150 Ω □−1.
机译:导电油墨通常依赖抗氧化金属纳米颗粒等如金、银、铜和镍。标准的空气稳定性限制的范围在印刷材料属性电子设备。基于air-stable替代方法纳米级金属氢化物。基于钛氢化物(TiH2) nanoinks环境下成功地印在聚酰亚胺利用强脉冲光大气和治愈处理。通过加热TiH2粉octylamine紧随其后湿法球磨,< 100海里血小板。添加一个合适的聚合物分散剂在球磨产生稳定的胶体分散体系适用于液相处理。印刷的合成TiH2 nanoinks演示了在玻璃和聚酰亚胺基质,解决好20μm。强脉冲光固化、样品在聚酰亚胺被发现具有烧结多孔形态与电气的薄层电阻

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