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Highly crystalline Ni/NiO hybrid electrodes processed by inkjet printing and laser-induced reductive sintering under ambient conditions

机译:高度结晶Ni / NiO混合电极喷墨印刷和激光处理在环境条件下还原烧结

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摘要

In this study, we perform drop-on-demand (DOD) inkjet printing and laser reductive sintering of precrystallized NiO nanoparticle (NP) ink under ambient conditions to obtain NiO/Ni hybrid electrode patterns on a highly localized area. By formulating an inkjet-printable and laser-reducible NiO NP ink, and by exploring the optimum conditions of inkjet printing parameters, we generate stable droplets, enabling arbitrary shapes of NiO NP dot arrays or line patterns to be deposited. Subsequent short-time low-temperature sintering produces highly crystalline NiO electrodes. Furthermore, laser reductive sintering applied on deposited NiO NP patterns can successfully realize a selective transformation of NiO into Ni electrodes under ambient conditions. Therefore, we can define either NiO or Ni electrodes, or a combination of the two on specific areas with precise amounts of ink. In addition, we identify the characteristics of the synthesized NPs, NP ink, NiO and Ni electrodes using various analytical methods.
机译:在这项研究中,我们执行drop-on-demand (DOD)喷墨印刷和激光还原烧结precrystallized氧化镍纳米颗粒(NP)墨水环境条件获得NiO /镍混合电极模式在一个高度本地化的区域。制定一个inkjet-printable和laser-reducible NiO NP墨水,和探索喷墨打印参数的最优条件,我们生成稳定的液滴,使任意的形状的NiO NP点数组或线模式沉积。低温烧结生产高度水晶NiO电极。还原烧结应用于沉积NiO NP模式可以成功地实现选择性NiO转换为镍电极环境条件。氧化镍或镍电极,或组合这两个与精确数量的特定区域墨水。合成NPs的NP墨水,NiO和倪电极使用各种分析方法。

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