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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Novel inkjet printing system and formation mechanism of PdO nanofilms for field-emission imaging devices
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Novel inkjet printing system and formation mechanism of PdO nanofilms for field-emission imaging devices

机译:用于场发射成像装置的PDO纳米滤网的新型喷墨印刷系统及地理机理

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摘要

We have developed a new inkjet printing system with high landing accuracy of ink droplets, and high uniformity of the width and profile of films for PdO nanofilm emitters in large-area field-emission imaging devices. The inkjet system has a temperature-and humidity-controlling unit and a vacuum chamber. The ink droplets can be printed with high accuracy in a high-humidity-environment. The droplets of the ink used in this study were pinned during a vacuum drying process and transformed into elliptical ringlike Pd precursor films. Next, the films were dissolved and transformed into droplets by humidification. The droplets were then dried again with various evaporation rates. As a result, the Pd precursor films were transformed into films with a nearly flat surface having the same in-plane size as the droplets. After annealing, PdO nanofilms with 80 +/- 5 mu m width and 4.4 +/- 0.7 nm thickness having the same uniform profiles were obtained.
机译:我们开发了一种新的喷墨印刷系统,具有墨滴的高地降落精度,以及大面积场 - 发射成像装置中PDO纳米膜发射器的薄膜宽度和型材的高均匀性。 喷墨系统具有温度和湿度控制单元和真空室。 可以在高湿度环境中以高精度印刷墨滴。 本研究中使用的油墨的液滴在真空干燥过程中固定并转化成椭圆形环状PD前体膜。 接下来,将薄膜溶解并通过湿化转化成液滴。 然后用各种蒸发速率再次干燥液滴。 结果,将Pd前体薄膜转化成薄膜,其具有与液滴相同的面内尺寸的几乎平坦的表面。 退火后,获得具有80 +/-5μm宽和4.4 +/- 0.7nm厚度的PDO纳米丝均得到具有相同均匀型材的4.4 +/- 0.7nm厚度。

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