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Comprehensive study on electrospray deposition in the single Taylor cone–jet mode by changing the spatial electric potential using a ring-shaped ternary electrode

机译:使用环形三元电极改变空间电位电势通过改变空间电位的电喷雾沉积综合研究

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In this work, the effect of changing the spatial electric potential to the spray current and the threshold voltage in the single Taylor cone–jet mode of the electrospray deposition (ESD) process has been investigated. The spatial electric potential between a nozzle electrode and a counter electrode was deformed by using an additional ring-shaped ternary electrode. The voltage ranges of the stable single Taylor cone–jet were determined from the current–voltage (I–V) characteristics of the system. Depending on the changes occurring in the spatial electric potential around the nozzle electrode, a shift of the threshold voltage to form a stable single Taylor cone–jet was clearly observed. For further investigation, the spatial electric potential and electric-field lines were analyzed by numerical simulations based on the computational finite element method. The deformation of the electric-field lines between the nozzle and counter electrodes implies a lack of droplet adhesion onto the ternary ring electrode and a focus of electrospray. Finally, we demonstrated the ESD of polymer materials with an area of 371 ± 160 mm 2 at a deposition rate of 314 ± 73 nm/min. The ESD technique is an important additive surface-modification method that is applicable to a variety of materials and suitable for highly viscous solutions and fragile biological samples.
机译:在这项工作中,研究了在电喷雾沉积(ESD)工艺的单泰勒锥形喷射模式下改变空间电位与喷射电流的效果和阈值电压。通过使用附加环形三元电极使喷嘴电极和对电极之间的空间电位变形。稳定单泰勒锥形射流的电压范围由系统的电流 - 电压(I-V)特性确定。根据喷嘴电极周围的空间电位发生的变化,清楚地观察到阈值电压的偏移以形成稳定的单泰勒锥形射流。为了进一步研究,通过基于计算有限元方法通过数值模拟分析空间电位和电场线。喷嘴和反电极之间的电场线的变形意味着缺乏液滴粘附到三元环形电极和电喷雾的焦点上。最后,我们证明了聚合物材料的ESD,面积为371±160mm 2,沉积速率为314±73nm / min。 ESD技术是一种重要的添加剂表面改性方法,适用于各种材料,适用于高粘度的溶液和脆弱的生物样品。

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