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Fabrication and sintering effect on the morphologies and conductivity of nano-Ag particle films by the spin coating method

机译:旋涂法制备和烧结对纳米银颗粒薄膜形貌和电导率的影响

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摘要

By adjusting the rotating speed and colloidal concentration in the spin coating of silver nanoparticles onto a glass substrate, the coating density could be varied from 1.5 X 10~(-6) to 1.1 X 10~(-4) g cm~2, or in other words from a dispersed distribution to multi-layered close packed films. The coating density was found to be proportional to the volume fraction of silver colloids and inversely to the rotating speed to the 0.442 power. The multi-layered films were further investigated for sintering behaviour. Our results indicated that the film started to exhibit a noticeable sintering effect at about 100 deg C, and at the same time it became electrically conductive. As the treatment temperature increased further, the film resistivity reached a minimum value at 250 deg C and finally became insulating again when the temperature was over 400 deg C due to silver coalescence into large particles and breaking up of the conductive paths. Smaller silver nanoparticles, however, would exhibit a similar phenomenon but at lower temperatures.
机译:通过调节在玻璃基板上旋涂银纳米颗粒的转速和胶体浓度,可以使涂层密度从1.5 X 10〜(-6)g到1.1 X 10〜(-4)g cm〜2,或者换句话说,从分散的分布到多层紧密堆积的薄膜。发现涂层密度与银胶体的体积分数成正比,并且与旋转至0.442功率的速度成反比。进一步研究了多层膜的烧结性能。我们的结果表明,该膜在约100摄氏度时开始表现出明显的烧结效果,并且同时具有导电性。随着处理温度的进一步升高,膜电阻率在250℃时达到最小值,并在温度超过400℃时再次绝缘,这是由于银聚结成大颗粒并破坏了导电路径。然而,较小的银纳米颗粒在较低温度下会表现出相似的现象。

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