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Efficient Inkjet Printing of Graphene-Based Elements: Influence of Dispersing Agent on Ink Viscosity

机译:基于石墨烯的元素的高效喷墨印刷:分散剂对油墨粘度的影响

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摘要

Inkjet printing is an excellent printing technique and an attractive alternative to conventional technologies for the production of flexible, low-cost microelectronic devices. Among many parameters that have a significant impact on the correctness of the printing process, the most important is ink viscosity. During the printing process, the ink is influenced by different strains and forces, which significantly change the printing results. The authors present a model and calculations referring to the shear rate of ink in an inkjet printer nozzle. Supporting experiments were conducted, proving the model assumptions for two different ink formulations: initial ink and with the addition of a dispersing agent. The most important findings are summarized by the process window regime of parameters, which is much broader for the inks with a dispersing agent. Such inks exhibit preferable viscosity, better print-ability, and higher path quality with lower resistivity. Presented results allow stating that proper, stable graphene inks adjusted for inkjet technique rheology must contain modifiers such as dispersing agents to be effectively printed.
机译:喷墨印刷是优良的印刷技术和有吸引力的替代传统技术生产的灵活的,低成本的微电子器件。在那些对印刷过程的正确性显著影响的许多参数,最重要的是油墨粘度。在印刷过程中,油墨是通过不同菌株和力,这显著改变打印结果的影响。作者提出的模型和计算参照墨的喷墨打印机喷嘴剪切速率。支撑进行实验,证明了模型假设为两个不同的油墨配方:初始墨并通过加入分散剂。最重要的发现是由参数的工艺窗口制度,这是用分散剂的墨更广泛的概括。这样的油墨表现出优选的粘度,更好的打印能力,并具有较低的电阻率更高的路径质量。呈现的结果指出允许调节用于喷墨技术的流变必须包含改性剂,例如分散剂,适当的,稳定的石墨烯的油墨被有效地打印。

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