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首页> 外文期刊>Materials transactions >Synthesis of Conductive Nano Ink Using 1-Octanethiol Coated Copper Nano Powders in 1-Octanol for Low Temperature Sintering Process
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Synthesis of Conductive Nano Ink Using 1-Octanethiol Coated Copper Nano Powders in 1-Octanol for Low Temperature Sintering Process

机译:1-辛醇中1-辛硫醇包覆的铜纳米粉在低温烧结过程中的导电纳米油墨的合成

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A conductive nanoink was prepared using copper nanoparticles (CNPs). In order to prevent the oxidation of CNPs, the particles were coated by 1-octanethiol using Vaporized Self-Assembled Multi-layers (VSAMs) method. The coating of 1-octanethiol onto CNPs was confirmed by transmission electron microscope (TEM) and X-ray photoelectron spectroscopy (XPS). Dispersion stability of CNPs was checked by monitoring its viscosity over 6 weeks. The sheet-type of patterned samples using the fabricated ink was sintered at 350 and 230°C, respectively. Electrical resistivity was measured to be 5.69 × 10~(-8) Ω-m when sintered at 350°C and 7.67 × 10~(-8) Ω-m when sintered at 230°C. These results were 3.4 and 4.6 times than the value for bulk copper. During the sintering process, the optimum temperature of removing organic materials was found to be 200°C. This removal temperature dramatically influenced necking and the density of samples. Therefore, 1-octanethiol VSAMs and 1-octanol ink were used successfully for the low-temperature sintering process to fabricate conductive Cu patterns by finding the optimum temperature of 200°C for complete removal of organic materials prior to the sintering process.
机译:使用铜纳米粒子(CNP)制备了导电纳米油墨。为了防止CNP的氧化,使用汽化的自组装多层(VSAMs)方法通过1​​-辛烷硫醇涂覆颗粒。通过透射电子显微镜(TEM)和X射线光电子能谱(XPS)证实了1-辛烷硫醇在CNP上的涂层。通过监测6周内其粘度来检查CNP的分散稳定性。使用制造的油墨的片状图案样品分别在350和230℃下烧结。在350°C下烧结时测得的电阻率为5.69×10〜(-8)Ω-m,在230°C下烧结时测得的电阻率为7.67×10〜(-8)Ω-m。这些结果分别是散装铜的3.4和4.6倍。在烧结过程中,发现去除有机材料的最佳温度为200°C。该去除温度极大地影响了颈缩和样品的密度。因此,成功地将1-辛硫醇VSAMs和1-辛醇油墨用于低温烧结工艺,以通过在烧结工艺之前找到200°C的最佳温度以完全去除有机材料来制造导电性铜图案。

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