Hussain Zulkifl, Kiaee Zohreh, Nazarzadeh Milad, Reichel Christian, Tepner Sebastian, Tuladhar Tri, Jahn Mike, Keding Roman
Fraunhofer Institute for Solar Energy Systems ISE, Heidenhofstraße 2, 79110 Freiburg, Germany.
Trijet Limited, 59 Eland Way, Cambridge CB1 9XQ, UK.
Micromachines (Basel). 2022 Dec 28;14(1):80. doi: 10.3390/mi14010080.
This work focuses on developing an understanding of the rheological properties of polymer-based dopant-source inks at the timescales relevant to inkjet printing and their corresponding roles in determining the production of defect-free droplets. Ink-specific optimization of printing processes for phosphorus and boron dopant-source inks with different compositions is demonstrated. Rheological flow curves measured by a piezo axial vibrator (PAV) were used to study the changes in complex viscosity () and in the elastic (G') and viscous (G″) components of the shear modulus (G) with respect to changes in frequency (from f = 1 kHz to f = 10 kHz) to obtain an insight into the high-frequency behaviour of inks, as well as the effects of temperature (25 °C and 45 °C) and the natural aging time of the inks. Inks demonstrating complex viscosity * ≥ 2 mPas to * ≤ 20 mPas and an elastic modulus G' ≤ 20 Pa, produced droplets with negligible defects. Of the three rheological parameters (*, G' and G″), the elastic component (G') of the shear modulus was observed to have the greatest significance in determining the stability and homogeneity of ink droplets, thus dictating the quality of the printed structures. The reliability and stability of droplet formation were further investigated through voltage waveform simulation using an oscilloscope.
这项工作的重点是在与喷墨打印相关的时间尺度上,深入了解聚合物基掺杂源墨水的流变特性,以及它们在确定无缺陷墨滴产生过程中的相应作用。展示了针对不同成分的磷和硼掺杂源墨水进行特定墨水的打印工艺优化。通过压电轴向振动器(PAV)测量的流变流动曲线,用于研究复数粘度()以及剪切模量(G)的弹性(G')和粘性(G″)分量随频率变化(从f = 1 kHz到f = 10 kHz)的情况,以深入了解墨水的高频行为,以及温度(25°C和45°C)和墨水自然老化时间的影响。复数粘度*≥2 mPas至*≤20 mPas且弹性模量G'≤20 Pa的墨水产生的墨滴缺陷可忽略不计。在三个流变参数(*、G'和G″)中,观察到剪切模量的弹性分量(G')在确定墨滴的稳定性和均匀性方面具有最大意义,从而决定了印刷结构的质量。通过使用示波器进行电压波形模拟,进一步研究了墨滴形成的可靠性和稳定性。