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Effects of coffee ring via inkjet printing seed layers on field emission properties of patterned ZnO nanorods

机译:咖啡环通过喷墨印刷种子层对图案ZnO纳米棒场排放特性的影响

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摘要

Inkjet printing, a fast, simple, efficient graphical deposition technology, is first applied to achieve high-quality emission arrays. Patterned arrays of ZnO nanorods have been successfully synthesized via hydrothermal method after inkjet printing the ZnO seed layer. During printing, different substrate temperatures were found to affect the morphology, microstructure and field emission (FE) properties of ZnO arrays. The results showed that the FE performance was improved when the coffee ring effect was eliminated by raising the substrate temperature due to higher aspect ratio of the nanorods. Both the compensating flow characteristics inside the droplets and the mechanism of regulating the rheological behavior of the solution during inkjet printing were analyzed to inhibit the effect of coffee ring, which played an important role in the later patterning electrode construction of emission arrays. The selective growth of the emitter material can be easily realized by introducing the direct patterning technology of inkjet printing in the preparation of field emission electron source.
机译:喷墨印刷,快速,简单,高效的图形沉积技术,首先应用于实现高质量排放阵列。在喷墨印刷ZnO种子层后,通过水热法已经成功地合成了ZnO纳米棒的图案化阵列。在印刷期间,发现不同的基板温度影响ZnO阵列的形态,微观结构和场发射(Fe)性能。结果表明,当由于纳米棒的较高纵横比而通过提高储存储存储存咖啡环效果时,改善了Fe性能。分析了液滴内的补偿流动特性和调节喷墨印刷期间溶液的流变行为的机制,以抑制咖啡环的效果,这在发射阵列的后续图案化电极结构中起着重要作用。通过在制备场发射电子源的喷墨印刷中引入直接图案化技术,可以容易地实现发射体材料的选择性生长。

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